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		<title>Frédéric Joliot Institute for Life Sciences - Sur le même thème</title>
		<link>https://joliot.cea.fr/drf/joliot/en/Pages/news/Science/2018/biotechnological-approach-new-bioactive-molecules.aspx</link>
		<description>Website of the Frédéric-Joliot Institute of Life Sciences which includes 4 departments: I2BC, DMTS, NeuroSpin and Service hospitalier Frédéric Joliot (SHFJ). The teams are mainly located at the CEA Paris-Saclay center and at the Orsay hospital. </description>
		<language>en-US</language>
		<image>
			<url>https://www.cea.fr/Style%20Library/Themes/drf/instituts/images/logo-cea-joliot-2023.png</url>
			<title>Frédéric Joliot Institute for Life Sciences - Sur le même thème</title>
			<link>https://joliot.cea.fr/drf/joliot/en</link>
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				<title>Biotherapies: the risk of immunogenicity associated with nanobodies</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2026/Biotherapies-immunogenicity-associated-with-nanobodies.aspx</link>
				<description>Nanobodies, promising biotherapeutic agents, may trigger undesirable immune reactions. A team from SIMoS demonstrates, using a sensitive assay on human T lymphocytes, that this risk exists for certain nanobodies and can be reduced through sequence humanization. These findings highlight the importance of assessing immunogenicity alongside therapeutic efficacy.</description>
				<category domain="thematiques">Biotechnology ; Diagnosis and innovative treatment</category>
				<category domain="public"></category>
				<category domain="organisation">SIMOPRO</category>
				<category domain="typologie">Scientific result ; Headlines</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 31 Mar 2026 10:00:00 GMT</pubDate>
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				<title>A mechanism protecting telomeres against chromosomal fusions</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Protection-telomeres-fusions-chromosomiques.aspx</link>
				<description>Researchers from CEA-Jacob and the Genome Integrity team at I2BC, in collaboration with Gustave Roussy and the Institut Pasteur, demonstrate that the Rap1 protein prevents the translocation of the Ku protein— a major factor in double-strand break repair — thereby avoiding deleterious fusions between chromosomes. </description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">microscopie électronique;</category>
				<pubDate>Mon, 17 Nov 2025 11:00:00 GMT</pubDate>
				<enclosure url="https://joliot.cea.fr/drf/joliot/PublishingImages/Actualites/Science/2025/Ku-Rap1-DNA-vignette.png" type="image/png"></enclosure>
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				<title>Cyanine 5-huwentoxin-IV : a new imaging agent for non-small cell lung cancer ?</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Cyanine-5-huwentoxin-IV-imaging-agent-lung-cancer.aspx</link>
				<description>A team from SIMoS (DMTS) has demonstrated the ability of a peptide derived from a spider venom toxin to detect overexpressed sodium channels in a metastatic non-small cell lung cancer (NSCLC) cell line.</description>
				<category domain="thematiques">Biotechnology ; Biomarkers ; Cell and molecular imaging ; Cancer</category>
				<category domain="public"></category>
				<category domain="organisation">SIMOPRO</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 10 Nov 2025 11:00:00 GMT</pubDate>
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				<title>Llama antibodies: new therapeutic avenues against schizophrenia</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Llama-antibodies-therapeutic-avenues-against-schizophrenia.aspx</link>
				<description>Researchers from SIMoS (DMTS) contributed to the characterization of a nanobody (VHH) designed by scientists at the Institut de Génomique Fonctionnelle in Montpellier. They performed tritium labeling and biodistribution tracking of this VHH, which can specifically activate a glutamate receptor involved in schizophrenia. This work was published in Nature.</description>
				<category domain="thematiques">Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SIMOPRO</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords">preclinical model;animal models;</category>
				<pubDate>Wed, 10 Sep 2025 10:00:00 GMT</pubDate>
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				<title>Mitosis: condense to better attach</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Mitose-KIF2C.aspx</link>
				<description>A study led by the I2BC shows that the formation of condensates of the enzyme KIF2C enables the concentration of two other proteins, PLK1 and phosphorylated BRCA2, on kinetochore microtubules during mitosis. This would serve to control chromosome alignment on the spindle and contribute to their stability.</description>
				<category domain="thematiques">DNA ; Structural biology ; Cancer</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 08 Sep 2025 10:00:00 GMT</pubDate>
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				<title>Unprecedented method for high-yield production of monoclonal antibodies through targeted cell fusion</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Monoclonal-antibodies-production-targeted-cell-fusion.aspx</link>
				<description>Researchers at SPI (DMTS) have developed a high-yield strategy for producing monoclonal antibodies by preselecting the antibody-producing cells most likely to form viable hybridomas. This represents a step towards a wider use of this technology which should help to further reduce the number of animals to be immunised.</description>
				<category domain="thematiques">Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SPI</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords">animal models;</category>
				<pubDate>Fri, 05 Sep 2025 10:00:00 GMT</pubDate>
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				<title>Grâce à de petits motifs dans une séquence désordonnée, Rad52 organise l’assemblage de Rad51</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Sequence-desordonnee-Rad52-assemblage-Rad51.aspx</link>
				<description>En utilisant Saccharomyces cerevisiae comme modèle, des chercheurs des instituts CEA-Jacob et CEA-Joliot, et de l’Institut Curie, avec leurs partenaires du synchrotron SOLEIL, ont révélé comment la protéine Rad52 agit comme un chaperon pour guider et stabiliser l’assemblage de Rad51, une étape clé de la recombinaison homologue.​</description>
				<category domain="thematiques">Structural biology ; Cellular mechanisms ; Molecular mechanisms</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 28 Jul 2025 10:00:00 GMT</pubDate>
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				<title>Computational modeling reveals the nature of human alpha-synuclein interactions with polyethylene nanoplastics</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Interactions-of-alpha-synuclein-with-polyethylene-nanoplastics.aspx</link>
				<description>A team from I2BC, in collaboration with the NIMBE (CEA-Iramis), is unveiling the nature of the interactions of human alpha-synuclein (hαSn) with polyethylene nanoplastics, using molecular dynamics simulations and experimental methods. </description>
				<category domain="thematiques">Nanotoxicology ; Simulation ＆ modelling ; Structural biology</category>
				<category domain="public"></category>
				<category domain="organisation">Iramis</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 27 May 2025 10:00:00 GMT</pubDate>
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				<title>Quand les interfaces protéine-ARN se réinventent : une conservation globale avec une pointe de versatilité !</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/interfaces-proteine-ARN.aspx</link>
				<description>Une équipe de l’I2BC a mené une étude prédictive de la structure des interfaces d’interaction dans les complexes protéine - ARN : bien que de nombreux aspects de ces interfaces soient largement conservés au cours de l’évolution, une grande versatilité existe dans les contacts polaires entre les molécules.</description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 20 May 2025 10:00:00 GMT</pubDate>
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				<title>A new toxin derived from snake venom to treat kidney diseases</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2025/Optimized-toxin-MQ232-snake-venom-renal-diseases.aspx</link>
				<description>Researchers at SIMoS, SPI (DMTS) and BioMaps (SHFJ) report the development of a new molecule, MQ232, derived from mambaquaretin. As a specific antagonist of the vasopressin V2 receptor, MQ232 is a promising drug candidate for the treatment of renal pathologies.</description>
				<category domain="thematiques">Health ＆ life sciences ; Diseases ; Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SHFJ</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords">animal models;preclinic;</category>
				<pubDate>Thu, 20 Mar 2025 11:00:00 GMT</pubDate>
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				<title>Immunothérapie anticancéreuse : un modèle structural pour comprendre l’action synergique de deux anticorps thérapeutiques sur la cible HER2</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/Immunotherapie-structure-HER2-trastuzumab-pertuzumab.aspx</link>
				<description>Des chercheurs de l’I2BC, en collaboration avec Sanofi, l’IMPMC et l’Institut Pasteur, ont modélisé la structure du complexe associant le récepteur membranaire HER2 avec deux fragments de liaison (Fab) de deux anticorps thérapeutiques dirigés contre cette cible, le trastuzumab et le pertuzumab. </description>
				<category domain="thematiques">Structural biology ; Microscope</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Fri, 08 Nov 2024 11:00:00 GMT</pubDate>
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				<title>The structure of the transmembrane region of the SARS-CoV-2 nsp3 protein confirms its essential role in viral replication</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/Structure-transmembrane-region-SARS-CoV-2-nsp3-protein.aspx</link>
				<description>An I2BC team has revealed the structure of the C-terminal transmembrane region of the SARS-CoV-2 protein nsp3, essential for virus replication. This region self-assembles into hexamers that form molecular pores on the surface of double-membrane vesicles, the sites of viral genome replication. Nsp3 therefore appears to be a promising therapeutic target.</description>
				<category domain="thematiques">Structural biology ; Virus</category>
				<category domain="public"></category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Thu, 08 Aug 2024 10:00:00 GMT</pubDate>
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				<title>DNA recombination: AlphaFold2 breaks a lock</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/DNA-recombination-lock.aspx</link>
				<description>Teams from I2BC, Institut Curie and IRB shed light on how the human nuclease MRN works. Structural predictions obtained with AlphaFold2 and confirmed by in vitro and in vivo experiments show that the phosphorylated Sae2/CtIP protein forms a network of interactions with MRN that favours the removal of its autoinhibition.</description>
				<category domain="thematiques">Structural biology ; DNA ; Molecular mechanisms ; Artificial intelligence</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 25 Jun 2024 10:00:00 GMT</pubDate>
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				<title>Insight into the activation process of MCM8-MCM9 Helicases</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/HROB-MCM8-MCM9.aspx</link>
				<description>Researchers from the AMIG team (I2BC department), in collaboration with the IRB (Switzerland), have modeled the interaction between HROB and the helicases MCM8-MCM9, some mutations of which predispose individuals to infertility or cancer. They demonstrate that HROB promotes the catalytic activity of the MCM8-MCM9 complex but does not play a role in its recruitment or stability.</description>
				<category domain="thematiques">Structural biology ; Molecular mechanisms</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords">AlphaFold;AlphaFold2;</category>
				<pubDate>Wed, 22 May 2024 10:00:00 GMT</pubDate>
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				<title>Epigenetics: combining flexible and rigid regions in a single structure to guarantee genome replication and stability</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/Epigenetics-CAF-1.aspx</link>
				<description>A team from the I2BC, in collaboration with the Institut Curie and Soleil, has shown that the CAF-1 protein combines flexible regions and rigid modules in its spatial organisation to deposit histones on DNA and effectively couple this process to DNA synthesis.</description>
				<category domain="thematiques">Epigenetics ; Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 26 Mar 2024 11:00:00 GMT</pubDate>
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				<title>Cryo-EM : A ring-shaped organisation for better control of the local concentration of BRCA2 essential for homologous recombination</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/Cryo-EM-ring-BRCA2-HSF2BP.aspx</link>
				<description>A collaboration involving the I2BC has modelled the structure of the complex between HSF2BP and a fragment of BRCA2, which is essential for DNA repair by homologous recombination. The researchers propose a mechanism for regulating the unexpected ring-like assembly of this complex. </description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Thu, 08 Feb 2024 11:00:00 GMT</pubDate>
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				<title>Protein-protein interactions: how to push forward the limits of the revolutionary AlphaFold2 programme?</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/proteins-proteins-interactions-AlphaFold2.aspx</link>
				<description>In an article published in Nature Communications, researchers from the I2BC show that applying a fragmentation strategy to the protein partners of assemblies depending on intrinsically disordered regions very significantly improves AlphaFold2&apos;s prediction capacity.</description>
				<category domain="thematiques">Structural biology ; Artificial intelligence</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 29 Jan 2024 11:00:00 GMT</pubDate>
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				<title>Functionalization of the B subunit of Shiga toxin as a vaccine tool</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2024/Functionalization-B-subunit-Shigatoxin-vaccine-tool.aspx</link>
				<description>Researchers at SIMoS (DMTS) describe the synthesis, engineering and evaluation of the properties of the B subunit of bacterial Shiga toxin (STxB), administered mucosally, as a vaccine tool. Their results confirm the value of using a synthetic STxB in an anti-tumor and anti-infectious vaccination strategy. </description>
				<category domain="thematiques">Biotechnology ; Vaccine</category>
				<category domain="public"></category>
				<category domain="organisation">SIMOPRO</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">préclinique;</category>
				<pubDate>Fri, 26 Jan 2024 11:00:00 GMT</pubDate>
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				<title>Phytic acid: a small molecule that helps repair DNA breaks</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/phytic-acid-DNA-repair.aspx</link>
				<description>In an article published in the journal Nucleic Acids Research, scientists from the I2BC, lPBS and the Institute for Structural and Chemical Biology (University of Leicester, UK) demonstrate how phytic acid, a product of cellular metabolism, stabilises the assembly of a complex enabling the repair of DNA breaks in humans.</description>
				<category domain="thematiques">DNA ; Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 04 Dec 2023 11:00:00 GMT</pubDate>
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				<title>Click-Chemistry: optimized drug delivery from nanomicelles into tumor cells</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/Click-Chemistry-optimized-drug-delivery-nanomicelles.aspx</link>
				<description>Researchers at SCBM have used a click-and-release chemistry approach to mass-release an anti-cancer drug into cells from cleavable nanomicelles, thanks to a bioorthogonal activation process. A step towards the development of new nanomedicines</description>
				<category domain="thematiques">Chemistry ; Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SCBM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Fri, 10 Nov 2023 11:00:00 GMT</pubDate>
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				<title>Multiplier les chimères pour mieux comprendre les interactions inhibiteur-cible protéique</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/Multiplier-chimeres-mieux-comprendre-interactions-inhibiteur-cible-proteique.aspx</link>
				<description>En substituant des segments d’hélice alpha​ par des segments d’oligo-urées dans un peptide inhibiteur d’ASF1, lui conférant ainsi une résistance accrue aux protéases, des chercheurs de l’I2BC en collaboration avec l’IECB explorent les modes de liaison de ces chimères peptide-urée à leur cible.</description>
				<category domain="thematiques">Molecular mechanisms ; Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 12 Sep 2023 10:00:00 GMT</pubDate>
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				<title>DNA repair machinery more flexible thanks to PAXX?</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/Reparation-ADN-PAXX.aspx</link>
				<description>An international collaboration led by researchers from I2BC/CEA-Joliot and IPBS (Toulouse) has solved the atomic structure of molecular assemblies involved in the repair of DNA double-strand breaks. The diversity of assemblies involving the PAXX protein identified in this study highlights the great flexibility of the repair machinery, which could reflect its ability to adapt to biological conditions. The results were published in Science Advances.</description>
				<category domain="thematiques">Structural biology ; Molecular mechanisms</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">cryoEM;radiocristallographie;</category>
				<pubDate>Tue, 06 Jun 2023 10:00:00 GMT</pubDate>
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				<title>Exploring the potential of a model cyanobacterium for the photosynthetic production of high-value terpenes</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/Model-cyanobacterium-production-high-value-terpenes.aspx</link>
				<description>Through two publications, an I2BC team demonstrates the high biotechnological potential of the model cyanobacterium Synechocystis PCC 6803 for the photosynthetic production of high value-added organic compounds, the terpenes.</description>
				<category domain="thematiques">Photosynthesis ; Microalgae ; Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Fri, 10 Feb 2023 11:00:00 GMT</pubDate>
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				<title>Hepatitis E virus: AlphaFold to the rescue to better understand how this pathogen multiplies its genome</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/Virus-hepatite-E-AlphaFold.aspx</link>
				<description>I2BC researchers unveil an atomic model of the hepatitis E virus replication polyprotein obtained with the AlphaFold artificial intelligence program. The model provides a better understanding of how this RNA virus multiplies its genome in infected cells. </description>
				<category domain="thematiques">Structural biology ; Simulation ＆ modelling ; Artificial intelligence</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">AlphaFold2;RNA virus;in vitro translation;</category>
				<pubDate>Wed, 08 Feb 2023 11:00:00 GMT</pubDate>
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				<title>Numerical simulation provides information on the restriction of BAF protein dynamics by phosphorylation</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2023/BAF-numerical-simulation-phosphorylation.aspx</link>
				<description>Using molecular dynamics simulation and NMR studies, I2BC researchers detail the restriction mechanisms of BAF protein dynamics due to its phosphorylation.</description>
				<category domain="thematiques">Molecular mechanisms ; Structural biology ; Simulation ＆ modelling</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 16 Jan 2023 11:00:00 GMT</pubDate>
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				<title>Discovery of a natural peptide from black mamba venom, with anticholinergic properties</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2022/Discovery-natural-peptide-black-mamba-venom.aspx</link>
				<description>​A team from SIMoS (DMTS) identifies and characterizes a toxin isolated from black mamba venom, whose specific anticholinergic properties at the type 2 acetylcholine receptor, a regulator of arterial tone, position it as a potential drug candidate for the treatment of cardiovascular diseases.</description>
				<category domain="thematiques">Health ＆ life sciences ; Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SIMOPRO</category>
				<category domain="typologie">Scientific result ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 21 Nov 2022 11:00:00 GMT</pubDate>
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				<title>Molecular engineering of antibodies to accommodate antigenic drift of SARS-CoV-1 and 2</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2022/Engineering-antibodies-accommodate-antigenic-drift-SARS-CoV-1-2.aspx</link>
				<description>Researchers from SIMoS and SPI (DMTS) demonstrate that molecular engineering of llama antibodies, capable of neutralizing SARS-CoV-1, allows to obtain optimized antibodies with very high affinities for SARS-CoV-2 and its variants, the culprits of the Covid-19 epidemic.</description>
				<category domain="thematiques">Biotechnology ; Virus</category>
				<category domain="public"></category>
				<category domain="organisation">SPI</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Thu, 22 Sep 2022 10:00:00 GMT</pubDate>
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				<title>How to make biodrugs less immunogenic? Answer with a monoclonal antibody with anti-inflammatory properties</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2022/How-to-make-biodrugs-less-immunogenic.aspx</link>
				<description>SIMoS team, in collaboration with Bicêtre Hospital, shows that certolizumab pegol, a pegylated monoclonal antibody fragment for anti-inflammatory use, is less likely to trigger an adverse immune response than the non-pegylated form.</description>
				<category domain="thematiques">Health ＆ life sciences ; Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation">SIMOPRO</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 20 Jun 2022 10:00:00 GMT</pubDate>
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				<title>Towards understanding the mechanisms responsible for intrahepatic cholestasis: biochemical and structural study of the human ATPase ATP8B1</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2022/Intrahepatic-cholestasis-biochemistry-structure-ATP8B1.aspx</link>
				<description>A collaborative study involving an I2BC team unveils the mechanism of autoinhibition of the human flippase ATP8B1, as well as its regulation by lipids and phosphorylation. The study provides a better understanding of the impact of flippase mutations responsible for intrahepatic cholestasis on its enzymatic activity. </description>
				<category domain="thematiques">Molecular mechanisms ; Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">ATP;hydrolyse;protéine membranaire;modifications post-traductionnelles;expression hétérologue;membranes;cryo-EM;</category>
				<pubDate>Thu, 09 Jun 2022 10:00:00 GMT</pubDate>
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				<title>The unveiling of atomic structure of lanreotide nanotubes surprises!</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2022/structure-nanotubes-lanreotide.aspx</link>
				<description>​Thanks to recent developments in cryo-electron microscopy, a study led by a team from the I2BC reveals, at the atomic scale, the unsuspected structural complexity of lanreotide nanotubes, a drug used in the treatment of acromegaly and some neuro-endocrine cancers. </description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Thu, 20 Jan 2022 11:00:00 GMT</pubDate>
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				<title>In silico modelling unveils mechanisms of coordination between pairing and crossovers during meiosis</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2022/Modeling-pairing-crossover-meiosis.aspx</link>
				<description>In a study conducted by a team from the Institut Curie, researchers from the CEA-Joliot (B3S/I2BC department) have modeled in silico protein-protein interactions and thus contributed to establish at the molecular level the mechanisms that coordinate the pairing and recombination of homologous chromosomes during meiosis. </description>
				<category domain="thematiques">Simulation ＆ modelling ; Structural biology ; Molecular mechanisms</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Article ; Scientific result</category>
				<category domain="keywords">recombinaison homologue;AlphaFold;crossing-over;InterEvDock3;</category>
				<pubDate>Thu, 13 Jan 2022 11:00:00 GMT</pubDate>
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				<title>Deeptope: accelerating the development of therapeutic antibodies via high-throughput functional tests</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Institute/2021/Deeptope-start-up-Simos.aspx</link>
				<description>Deeptope, founded in February 2021 from a technology developed at the DMTS Laboratory of Cellular Immunology and Biotechnology (LICB), is a company of therapeutic antibody engineering that provides antibody optimization and characterization services to biotech or pharmaceutical firms with the goal of increasing the quality of antibodies in a very short timeframe.</description>
				<category domain="thematiques">Biotechnology ; Pharmacology</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">News ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 29 Nov 2021 11:00:00 GMT</pubDate>
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				<title>The european PPI4HPC project echoes high-performance computing at CEA for the modelisation of complex molecular assemblages</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Institute/2021/High-performance-computing-molecular-modelisation.aspx</link>
				<description>A project at the interface between quantum chemistry and molecular dynamics for the study of complex molecular assemblies, led by Michel Masella (Joliot) and Luigi Genovese (IRIG), makes it possible, for applications in biology/health, to take full advantage of the new supercomputers of the Public Procurement of Innovations for High-Performance Computing (PPI4HPC, H2020) project hosted at the Très Grand Centre de Calcul (TGCC) of the CEA-Bruyères-le-Châtel.</description>
				<category domain="thematiques">Computing ; Simulation ＆ modelling ; Supercomputers ; Structural biology</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">News ; Article</category>
				<category domain="keywords"></category>
				<pubDate>Tue, 14 Sep 2021 10:00:00 GMT</pubDate>
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				<title>Structure of the BRCA2-HFS2BP complex: the interaction is not required for Rad51 recruitment to DNA in meiosis</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2021/BRCA2-HFS2BP-meiosis.aspx</link>
				<description>By solving the three-dimensional structure of a fragment of the BRCA2-HSF2BP complex, a collaboration involving teams from I2BC and ERASMUS MC identifies the precise BRCA2 motif that causes the very high affinity between the two partners and shows that, in vivo, this complex has no function in the recruitment of Rad51 to meiotic sites of homologous recombination. </description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Article ; Scientific result</category>
				<category domain="keywords">RMN;radiocristallographie;</category>
				<pubDate>Mon, 13 Sep 2021 10:00:00 GMT</pubDate>
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				<title>3rd version of the InterEvDock server: better exploiting protein sequence evolution data to improving the prediction of interface structures</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2021/InterEvDock3.aspx</link>
				<description>Researchers at I2BC/CEA-Joliot, in collaboration with the RPBS platform, have developed the third version of their InterEvDock server for structural modelling of protein-protein interactions. The server integrates new algorithms for exploiting sequence evolution information.</description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">HADDOCK;FRODOCK;coMSAs;CAPRI;</category>
				<pubDate>Mon, 21 Jun 2021 10:00:00 GMT</pubDate>
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				<title>Molecular basis of the “scissors” mechanism involved in meiotic recombination and DNA repair</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2021/Mlh1-Mlh3.aspx</link>
				<description>Researchers from I2BC/CEA-Joliot in collaboration with teams from Institut Curie and IRCM/CEA-Jacob, lay the molecular basis to explain the dual role of the Mlh1-Mlh3 complex in DNA mismatch repair and, quite uniquely, in one of the key steps of genetic mixing during meiosis. </description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">cristallography;repair;recombination;</category>
				<pubDate>Mon, 07 Jun 2021 10:00:00 GMT</pubDate>
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				<title>Phosphorylation of BAF alters its dynamics and interaction with DNA but not its contacts with the nuclear envelope</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2021/phosphorylation-BAF-interaction.aspx</link>
				<description>​A study by researchers from I2BC department shows in vitro the effect of mitotic phosphorylation of the BAF protein on its structure and its interactions with DNA and lamina and unveils consequences on genome organization and on mechanisms responsible for progeroid syndromes.</description>
				<category domain="thematiques">Molecular mechanisms ; DNA ; Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">NMR;radiocristallography;</category>
				<pubDate>Mon, 29 Mar 2021 10:00:00 GMT</pubDate>
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				<title>Anti-cancer therapeutic strategy: a chimera to inhibit ASF1</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2021/Foldamer-inhibitor-ASF1.aspx</link>
				<description>I2BC researchers, in collaboration with the European Institute of Chemistry and Biology (University of Bordeaux, CNRS), have developed a chimeric peptide/foldamer molecule that is resistant to proteolysis and inhibits ASF1, a potential target for anticancer treatment. The resolution of the structure of this chimera in interaction with its target, the first of its kind, reveals an unsuspected plasticity of the urea-based backbone that hugs the surface of ASF1. </description>
				<category domain="thematiques">Structural biology ; Molecular mechanisms ; Epigenetics ; Cancer</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords">NMR;radiocristallography;</category>
				<pubDate>Fri, 19 Mar 2021 11:00:00 GMT</pubDate>
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				<title>First functional characterization of ATP2, an essential Plasmodium flippase and potential antimalarial target</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2021/Functional-characterization-PcATP2-essential-Plasmodium-flippase.aspx</link>
				<description>I2BC researchers, in collaboration with the Autonomous University of Barcelona, have provided the first studies of the function and structural organization of a flippase encoded by a parasite responsible for malaria, a first step towards understanding the essential physiological function of this transporter and its potential use as an antimalarial target.</description>
				<category domain="thematiques">Structural biology ; Infectious diseases</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Wed, 17 Mar 2021 11:00:00 GMT</pubDate>
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				<title>Synthetic biology: new tools to increase the diversity of the 2,5-diketopiperazines produced in E.coli</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2020/Synthetic-biology-increase-diversity-diketopiperazines.aspx</link>
				<description>Researchers from I2BC (SBIGeM), in collaboration with teams from Sorbonne University, have characterized cyclodipeptide oxidases in vivo and shown that they are valuable tools for producing dehydrogenated 2,5-diketopiperazines, precursors of bioactive molecules of pharmaceutical interest, in Escherichia coli using synthetic biology approaches.</description>
				<category domain="thematiques">Fundamental Research ; Health ＆ life sciences ; Biotechnology</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Fri, 25 Sep 2020 10:00:00 GMT</pubDate>
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				<title>Lamins and Progeria: What Does Structural Biology Tell Us?</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Institute/2020/Lamines-Progeria-Structural-Biology.aspx</link>
				<description>A team from the I2BC publishes in FEBS Journal an exhaustive review of the various mutations affecting the structure of type A lamins, proteins that make up the envelope of the cell nucleus (nuclear lamina), which lead to premature aging in people with the disease (Progeria). </description>
				<category domain="thematiques">Structural biology ; Diseases</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie"></category>
				<category domain="keywords"></category>
				<pubDate>Mon, 24 Aug 2020 10:00:00 GMT</pubDate>
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				<title>Magnetic sensors for ultra-sensitive biochips</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2020/Magnetic-sensors-ultra-sensitive-biochips.aspx</link>
				<description>Researchers from IRAMIS collaborated with a team from SPI (LERI) for the development of a microfluidic biochip (&quot;lab-on-chip&quot;) based on ultra-sensitive magnetic sensors with giant magnetoresistance (GMR sensors), capable of individually and effectively detect magnetically-labeled biological targets.</description>
				<category domain="thematiques">Biotechnology ; Biodetection ; Physics</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Wed, 08 Jan 2020 11:00:00 GMT</pubDate>
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				<title>A ferredoxin to fuel metabolic pathways of biotechnological interest</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2019/A-ferredoxin-to-fuel-metabolic-pathways.aspx</link>
				<description>Researchers at BIAM and I2BC@Saclay, in collaboration with Japanese colleagues from Okayama University and Ehime, have characterized in a cyanobacterium a minor protein that diverts part of the energy from photosynthesis to secondary metabolic pathways. This discovery is promising to exploit these metabolic pathways in a biotechnological process of bioenergy production.
</description>
				<category domain="thematiques">Biotechnology ; Bioenergy ; Photosynthesis</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 14 Oct 2019 10:00:00 GMT</pubDate>
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				<title>Lipid transmembrane transport: very first structures are revealed! </title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2019/Drs2-Cdc50-CryoEM-Structure-Nature.aspx</link>
				<description>Researchers from I2BC@Saclay, the University of Aarhus and the Max Planck Institute of Biophysics in Frankfurt reveals the first cryo-EM high-resolution structures of one of the P4-ATPases. Study has been published in Nature. It give a better insight towards the understanding of the transport mechanisms of membrane lipids. A lipid pathway through the protein membrane domain is suggested.   
</description>
				<category domain="thematiques">Structural biology ; Molecular mechanisms</category>
				<category domain="public"></category>
				<category domain="organisation">Saclay</category>
				<category domain="typologie">Press release ; Scientific result</category>
				<category domain="keywords">lipid asymetry;P4-ATPase;membrane lipid translocation;</category>
				<pubDate>Thu, 27 Jun 2019 10:00:00 GMT</pubDate>
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				<title>FRISBI: the structural biology platform of Genopole joins the National Infrastructure</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Institute/2019/Genopole-structural-biology-platforms-joins-FRISBI.aspx</link>
				<description>The French National Infrastructure of Integrated Structural Biology (FRISBI) is now integratinf Genopole&apos;s structural biology platform into its Paris-Sud node. </description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public">Researchers</category>
				<category domain="organisation">Saclay</category>
				<category domain="typologie">Academic partnerships</category>
				<category domain="keywords">i;microscope à force atomique;plateforme;</category>
				<pubDate>Fri, 10 May 2019 10:00:00 GMT</pubDate>
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				<title>DNA repair: in-depth look at the initial stages</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2018/DNA-repair-zoom-first-steps.aspx</link>
				<description>A research team from the SB2SM (I2BC@Saclay), in collaboration with the CNRS, SOLEIL , Universities of Paris-Sud, Aix-Marseille and Paul Sabatier - Toulouse III and Gustave Roussy, has resolved structures of two complexes involved in radiation-induced DNA damages. These results were published in Nature Structural &amp; Molecular Biology on October, the 5th.</description>
				<category domain="thematiques">DNA ; Structural biology ; Molecular mechanisms</category>
				<category domain="public"></category>
				<category domain="organisation">SB2SM</category>
				<category domain="typologie">Press release</category>
				<category domain="keywords"></category>
				<pubDate>Mon, 08 Oct 2018 10:00:00 GMT</pubDate>
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				<title>What is the relationship between variants of the BRCA1 gene and susceptibility to cancer?</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2018/relationship-variants-BRCA1-cancer.aspx</link>
				<description>Research Teams from the Curie Institute, the Gustave Roussy Institute, as well as the biophysics teams from the Institute of Chemistry of Natural Substances and SB2SM (I2BC@Saclay) met to systematically identify structural defects and BRCA1 proteins encoded by variants of the BRCA1 gene, a gene predisposing to breast and ovarian cancer. Their results make it possible to propose a classification of these variants (neutral versus causal).</description>
				<category domain="thematiques">Cancer ; Structural biology ; DNA</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">Scientific result</category>
				<category domain="keywords"></category>
				<pubDate>Fri, 28 Sep 2018 10:00:00 GMT</pubDate>
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				<title>Protein modification: myristoylation finally decoded</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2018/myristoylation-decoded.aspx</link>
				<description>An I2BC Research Team, in collaboration with the ICSN and the Ecole Polytechnique, has mapped for the first time, in man and the model plant Arabidopsis thaliana, the myristoylome, namely the whole proteins modified with a fatty acid, myristate. This modification is important because it targets these proteins to the membranes and thus contributes to their subcellular compartmentalization. These data represent an important resource, available to the community of biologists.</description>
				<category domain="thematiques">Structural biology</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">News</category>
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				<pubDate>Tue, 26 Jun 2018 10:00:00 GMT</pubDate>
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				<title>The ghosts of fluorescence</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2018/ghosts-of-fluorescence.aspx</link>
				<description>Cell biology uses fluorescent labeling, an essential technique to follow the life of the cell. But fluorescent proteins have their limits, which researchers from IBS and I2BC @ Saclay (SB2SM) are trying to repel.</description>
				<category domain="thematiques">Structural biology ; Proteomics</category>
				<category domain="public"></category>
				<category domain="organisation"></category>
				<category domain="typologie">Scientific result</category>
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				<pubDate>Wed, 28 Mar 2018 10:00:00 GMT</pubDate>
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				<title>An original biotechnological approach to create new bioactive molecules</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Science/2018/biotechnological-approach-new-bioactive-molecules.aspx</link>
				<description>​Muriel Gondry&apos;s Research Team (I2BC@Saclay / SBIGeM), in collaboration with SIMOPRO and Biomolecules Laboratory of the Sorbonne University&apos;s one, produced 200 cyclodipeptides containing non-natural amino acids by luring and diverting the cellular machinery for the synthesis of proteins. This unprecedented approach significantly increases the diversity of these bioactive molecules.
</description>
				<category domain="thematiques">Biotechnology ; Structural biology</category>
				<category domain="public"></category>
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				<category domain="typologie">Scientific result</category>
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				<pubDate>Mon, 05 Mar 2018 11:00:00 GMT</pubDate>
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				<title>New MOOC on biological crystallography</title>
				<link>https://www.cea.fr/drf/joliot/en/Pages/news/Institute/2017/New_MOOC_on_biological_crystallography.aspx</link>
				<description>Paris-Saclay University is pleased to present the MOOC &quot;Journey to the heart of life with X-rays: crystallography&quot;, result of a close collaboration between the Department I2BC @ Saclay (pedagogical director: Marie-Hélène Le Du ), the Sun Synchrotron, the Ecole Polytechnique, the CNRS, and the University Paris Sud.</description>
				<category domain="thematiques">Institutional ; Health ＆ life sciences ; Structural biology</category>
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				<category domain="typologie">News</category>
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				<pubDate>Mon, 18 Sep 2017 10:00:00 GMT</pubDate>
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