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<datestamp>2023-02-15T07:00:18.852Z</datestamp>
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<identifier identifierType="DOI">10.15151/ESRF-ES-1023809659</identifier>
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<creator>
<creatorName nameType="Personal">Gert BANGE</creatorName>
<givenName>Gert</givenName>
<familyName>Bange</familyName>
<nameIdentifier nameIdentifierScheme="ORCID">0000-0002-7826-0932</nameIdentifier>
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<creatorName nameType="Personal">Felix DEMPWOLFF</creatorName>
<givenName>Felix</givenName>
<familyName>Dempwolff</familyName>
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<creator>
<creatorName nameType="Personal">Felix DEMPWOLFF</creatorName>
<givenName>Felix</givenName>
<familyName>Dempwolff</familyName>
<nameIdentifier nameIdentifierScheme="ORCID">0000-0002-7788-8445</nameIdentifier>
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<creator>
<creatorName nameType="Personal">Philippe CARPENTIER</creatorName>
<givenName>Philippe</givenName>
<familyName>Carpentier</familyName>
<nameIdentifier nameIdentifierScheme="ORCID">0000-0003-1268-7826</nameIdentifier>
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<title>Macromolecular crystallography at the Philipps University Marburg (MarBAG)</title>
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<publisher>Example Institute</publisher>
<publicationYear>2026</publicationYear>
<resourceType resourceTypeGeneral="Collection">Data from large facility measurement</resourceType>
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<date dateType="Collected">2023-02-14T08:30:00Z/2023-02-15T07:00:00Z</date>
<date dateType="Accepted">2023-02-15T07:00:00Z</date>
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<description descriptionType="Abstract">Located at the Philipps-University-Marburg and the Max-Planck-Institute for terrestrial Microbiology in Marburg, Germany, the MarBAG employs X-ray crystallography to answer fundamental questions involving synthesis and assembly of macromolecular machines and cellular structures (e.g. CO2-fixation pathways, flagellar biosynthesis, CRISPR-Cas Systems, cell-wall-related processes). Our analysis of the structural basis of CO2 fixation and the synthesis of the green-house gas methane will help to engineer these processes as tools in climate control. Furthermore, we are interested in plant-pathogen interactions and the function of nucleotide derived signalling molecules in cellular stress physiology and organization. Currently, a 200 keV cryo-electron microscope is being installed at the UMR to complement our efforts to structurally characterize macromolecular complexes, which do not readily crystallize.</description>
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