Now showing 1 - 10 of 86
  • 2016Journal Article
    [["dc.bibliographiccitation.firstpage","4738"],["dc.bibliographiccitation.issue","15"],["dc.bibliographiccitation.journal","Angewandte Chemie International Edition"],["dc.bibliographiccitation.lastpage","4742"],["dc.bibliographiccitation.volume","55"],["dc.contributor.author","Guo, Yuan"],["dc.contributor.author","Sakonsinsiri, Chadamas"],["dc.contributor.author","Nehlmeier, Inga"],["dc.contributor.author","Fascione, Martin A."],["dc.contributor.author","Zhang, Haiyan"],["dc.contributor.author","Wang, Weili"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.contributor.author","Turnbull, W. Bruce"],["dc.contributor.author","Zhou, Dejian"],["dc.date.accessioned","2022-10-06T13:34:57Z"],["dc.date.available","2022-10-06T13:34:57Z"],["dc.date.issued","2016"],["dc.identifier.doi","10.1002/anie.201600593"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/116020"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-602"],["dc.relation.issn","1433-7851"],["dc.relation.orgunit","Deutsches Primatenzentrum"],["dc.title","Compact, Polyvalent Mannose Quantum Dots as Sensitive, Ratiometric FRET Probes for Multivalent Protein-Ligand Interactions"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dspace.entity.type","Publication"]]
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  • 2014Journal Article
    [["dc.bibliographiccitation.firstpage","2123"],["dc.bibliographiccitation.issue","8"],["dc.bibliographiccitation.journal","Journal of Antimicrobial Chemotherapy"],["dc.bibliographiccitation.lastpage","2131"],["dc.bibliographiccitation.volume","69"],["dc.contributor.author","Gehring, Gerrit"],["dc.contributor.author","Rohrmann, Katrin"],["dc.contributor.author","Atenchong, Nkacheh"],["dc.contributor.author","Mittler, Eva"],["dc.contributor.author","Becker, Stephan"],["dc.contributor.author","Dahlmann, Franziska"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.contributor.author","Vondran, Florian W. R."],["dc.contributor.author","David, Sascha"],["dc.contributor.author","Manns, Michael P."],["dc.contributor.author","von Hahn, Thomas"],["dc.date.accessioned","2022-10-06T13:35:10Z"],["dc.date.available","2022-10-06T13:35:10Z"],["dc.date.issued","2014"],["dc.identifier.doi","10.1093/jac/dku091"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/116030"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-602"],["dc.relation.eissn","1460-2091"],["dc.relation.issn","0305-7453"],["dc.relation.orgunit","Deutsches Primatenzentrum"],["dc.title","The clinically approved drugs amiodarone, dronedarone and verapamil inhibit filovirus cell entry"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dspace.entity.type","Publication"]]
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  • 2019Journal Article
    [["dc.bibliographiccitation.firstpage","275"],["dc.bibliographiccitation.issue","3"],["dc.bibliographiccitation.journal","Viruses"],["dc.bibliographiccitation.volume","11"],["dc.contributor.author","Zapatero-Belinchón, Francisco"],["dc.contributor.author","Dietzel, Erik"],["dc.contributor.author","Dolnik, Olga"],["dc.contributor.author","Döhner, Katinka"],["dc.contributor.author","Costa, Rui"],["dc.contributor.author","Hertel, Barbara"],["dc.contributor.author","Veselkova, Barbora"],["dc.contributor.author","Kirui, Jared"],["dc.contributor.author","Klintworth, Anneke"],["dc.contributor.author","Manns, Michael"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.contributor.author","Pietschmann, Thomas"],["dc.contributor.author","Krey, Thomas"],["dc.contributor.author","Ciesek, Sandra"],["dc.contributor.author","Gerold, Gisa"],["dc.contributor.author","Sodeik, Beate"],["dc.contributor.author","Becker, Stephan"],["dc.contributor.author","von Hahn, Thomas"],["dc.date.accessioned","2020-12-10T18:47:24Z"],["dc.date.available","2020-12-10T18:47:24Z"],["dc.date.issued","2019"],["dc.identifier.doi","10.3390/v11030275"],["dc.identifier.eissn","1999-4915"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/78753"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.title","Characterization of the Filovirus-Resistant Cell Line SH-SY5Y Reveals Redundant Role of Cell Surface Entry Factors"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]
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  • 2014Journal Article
    [["dc.bibliographiccitation.firstpage","1654"],["dc.bibliographiccitation.issue","4"],["dc.bibliographiccitation.journal","Viruses"],["dc.bibliographiccitation.lastpage","1671"],["dc.bibliographiccitation.volume","6"],["dc.contributor.author","Gnirß, Kerstin"],["dc.contributor.author","Fiedler, Marie"],["dc.contributor.author","Krämer-Kühl, Annika"],["dc.contributor.author","Bolduan, Sebastian"],["dc.contributor.author","Mittler, Eva"],["dc.contributor.author","Becker, Stephan"],["dc.contributor.author","Schindler, Michael"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.date.accessioned","2022-10-06T13:26:51Z"],["dc.date.available","2022-10-06T13:26:51Z"],["dc.date.issued","2014"],["dc.identifier.doi","10.3390/v6041654"],["dc.identifier.pii","v6041654"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/115181"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-602"],["dc.relation.eissn","1999-4915"],["dc.relation.orgunit","Deutsches Primatenzentrum"],["dc.title","Analysis of Determinants in Filovirus Glycoproteins Required for Tetherin Antagonism"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dspace.entity.type","Publication"]]
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  • 2013Journal Article
    [["dc.bibliographiccitation.firstpage","2034"],["dc.bibliographiccitation.issue","12"],["dc.bibliographiccitation.journal","Emerging Infectious Diseases"],["dc.bibliographiccitation.lastpage","2036"],["dc.bibliographiccitation.volume","19"],["dc.contributor.author","Gierer, Stefanie"],["dc.contributor.author","Hofmann-Winkler, Heike"],["dc.contributor.author","Albuali, Waleed H."],["dc.contributor.author","Bertram, Stephanie"],["dc.contributor.author","Al-Rubaish, Abdullah M."],["dc.contributor.author","Yousef, Abdullah A."],["dc.contributor.author","Al-Nafaie, Awatif N."],["dc.contributor.author","Al-Ali, Amein K."],["dc.contributor.author","Obeid, Obeid E."],["dc.contributor.author","Alkharsah, Khaled R."],["dc.contributor.author","Pöhlmann, Stefan"],["dc.date.accessioned","2022-10-06T13:26:39Z"],["dc.date.available","2022-10-06T13:26:39Z"],["dc.date.issued","2013"],["dc.identifier.doi","10.3201/eid1912.130701"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/115131"],["dc.notes.intern","DOI-Import GROB-602"],["dc.relation.eissn","1080-6059"],["dc.relation.issn","1080-6040"],["dc.relation.orgunit","Deutsches Primatenzentrum"],["dc.title","Lack of MERS Coronavirus Neutralizing Antibodies in Humans, Eastern Province, Saudi Arabia"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dspace.entity.type","Publication"]]
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  • 2011Journal Article
    [["dc.bibliographiccitation.firstpage","S840"],["dc.bibliographiccitation.issue","suppl_3"],["dc.bibliographiccitation.journal","The Journal of Infectious Diseases"],["dc.bibliographiccitation.lastpage","S849"],["dc.bibliographiccitation.volume","204"],["dc.contributor.author","Kühl, Annika"],["dc.contributor.author","Hoffmann, Markus"],["dc.contributor.author","Müller, Marcel A."],["dc.contributor.author","Munster, Vincent J."],["dc.contributor.author","Gnirß, Kerstin"],["dc.contributor.author","Kiene, Miriam"],["dc.contributor.author","Tsegaye, Theodros Solomon"],["dc.contributor.author","Behrens, Georg"],["dc.contributor.author","Herrler, Georg"],["dc.contributor.author","Feldmann, Heinz"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.date.accessioned","2022-10-06T13:34:58Z"],["dc.date.available","2022-10-06T13:34:58Z"],["dc.date.issued","2011"],["dc.identifier.doi","10.1093/infdis/jir306"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/116022"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-602"],["dc.relation.eissn","1537-6613"],["dc.relation.issn","0022-1899"],["dc.relation.orgunit","Deutsches Primatenzentrum"],["dc.title","Comparative Analysis of Ebola Virus Glycoprotein Interactions With Human and Bat Cells"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dspace.entity.type","Publication"]]
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  • 2021Journal Article
    [["dc.bibliographiccitation.journal","Cellular & Molecular Immunology"],["dc.contributor.author","Hammerschmidt, Swantje I."],["dc.contributor.author","Bosnjak, Berislav"],["dc.contributor.author","Bernhardt, Günter"],["dc.contributor.author","Friedrichsen, Michaela"],["dc.contributor.author","Ravens, Inga"],["dc.contributor.author","Dopfer-Jablonka, Alexandra"],["dc.contributor.author","Hoffmann, Markus"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.contributor.author","Behrens, Georg M. N."],["dc.contributor.author","Förster, Reinhold"],["dc.date.accessioned","2021-09-01T06:42:25Z"],["dc.date.available","2021-09-01T06:42:25Z"],["dc.date.issued","2021"],["dc.identifier.doi","10.1038/s41423-021-00755-z"],["dc.identifier.pii","755"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/89048"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-455"],["dc.relation.eissn","2042-0226"],["dc.relation.issn","1672-7681"],["dc.title","Neutralization of the SARS-CoV-2 Delta variant after heterologous and homologous BNT162b2 or ChAdOx1 nCoV-19 vaccination"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]
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  • 2021Journal Article
    [["dc.bibliographiccitation.artnumber","S2211124721008287"],["dc.bibliographiccitation.firstpage","109415"],["dc.bibliographiccitation.issue","3"],["dc.bibliographiccitation.journal","Cell Reports"],["dc.bibliographiccitation.volume","36"],["dc.contributor.author","Hoffmann, Markus"],["dc.contributor.author","Hofmann-Winkler, Heike"],["dc.contributor.author","Krüger, Nadine"],["dc.contributor.author","Kempf, Amy"],["dc.contributor.author","Nehlmeier, Inga"],["dc.contributor.author","Graichen, Luise"],["dc.contributor.author","Arora, Prerna"],["dc.contributor.author","Sidarovich, Anzhalika"],["dc.contributor.author","Moldenhauer, Anna-Sophie"],["dc.contributor.author","Winkler, Martin S."],["dc.contributor.author","Pöhlmann, Stefan"],["dc.date.accessioned","2021-09-01T06:42:36Z"],["dc.date.available","2021-09-01T06:42:36Z"],["dc.date.issued","2021"],["dc.identifier.doi","10.1016/j.celrep.2021.109415"],["dc.identifier.pii","S2211124721008287"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/89097"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-455"],["dc.relation.issn","2211-1247"],["dc.title","SARS-CoV-2 variant B.1.617 is resistant to bamlanivimab and evades antibodies induced by infection and vaccination"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]
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  • 2018Journal Article
    [["dc.bibliographiccitation.firstpage","13863"],["dc.bibliographiccitation.issue","36"],["dc.bibliographiccitation.journal","Journal of Biological Chemistry"],["dc.bibliographiccitation.lastpage","13873"],["dc.bibliographiccitation.volume","293"],["dc.contributor.author","Zmora, Pawel"],["dc.contributor.author","Hoffmann, Markus"],["dc.contributor.author","Kollmus, Heike"],["dc.contributor.author","Moldenhauer, Anna-Sophie"],["dc.contributor.author","Danov, Olga"],["dc.contributor.author","Braun, Armin"],["dc.contributor.author","Winkler, Michael"],["dc.contributor.author","Schughart, Klaus"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.date.accessioned","2020-12-10T18:12:58Z"],["dc.date.available","2020-12-10T18:12:58Z"],["dc.date.issued","2018"],["dc.identifier.doi","10.1074/jbc.RA118.001273"],["dc.identifier.eissn","1083-351X"],["dc.identifier.issn","0021-9258"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/74544"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-354"],["dc.title","TMPRSS11A activates the influenza A virus hemagglutinin and the MERS coronavirus spike protein and is insensitive against blockade by HAI-1"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]
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  • 2017Journal Article
    [["dc.bibliographiccitation.artnumber","e00246-17"],["dc.bibliographiccitation.issue","11"],["dc.bibliographiccitation.journal","Journal of Virology"],["dc.bibliographiccitation.volume","91"],["dc.contributor.author","Gerlach, Thomas"],["dc.contributor.author","Hensen, Luca"],["dc.contributor.author","Matrosovich, Tatyana"],["dc.contributor.author","Bergmann, Janina"],["dc.contributor.author","Winkler, Michael"],["dc.contributor.author","Peteranderl, Christin"],["dc.contributor.author","Klenk, Hans-Dieter"],["dc.contributor.author","Weber, Friedemann"],["dc.contributor.author","Herold, Susanne"],["dc.contributor.author","Pöhlmann, Stefan"],["dc.contributor.editor","Dermody, Terence S."],["dc.date.accessioned","2022-10-06T13:25:32Z"],["dc.date.available","2022-10-06T13:25:32Z"],["dc.date.issued","2017"],["dc.description.abstract","ABSTRACT\n The replication and pathogenicity of influenza A viruses (IAVs) critically depend on their ability to tolerate the antiviral interferon (IFN) response. To determine a potential role for the IAV hemagglutinin (HA) in viral sensitivity to IFN, we studied the restriction of IAV infection in IFN-β-treated human epithelial cells by using 2:6 recombinant IAVs that shared six gene segments of A/Puerto Rico/8/1934 virus (PR8) and contained HAs and neuraminidases of representative avian, human, and zoonotic H5N1 and H7N9 viruses. In A549 and Calu-3 cells, viruses displaying a higher pH optimum of HA-mediated membrane fusion, H5N1-PR8 and H7N9-PR8, were less sensitive to the IFN-induced antiviral state than their counterparts with HAs from duck and human viruses, which fused at a lower pH. The association between a high pH optimum of fusion and reduced IFN sensitivity was confirmed by using HA point mutants of A/Hong Kong/1/1968-PR8 that differed solely by their fusion properties. Furthermore, similar effects of the viral fusion pH on IFN sensitivity were observed in experiments with (i) primary human type II alveolar epithelial cells and differentiated cultures of human airway epithelial cells, (ii) nonrecombinant zoonotic and pandemic IAVs, and (iii) preparations of IFN-α and IFN-λ1. A higher pH of membrane fusion and reduced sensitivity to IFN correlated with lower restriction of the viruses in MDCK cells stably expressing the IFN-inducible transmembrane proteins IFITM2 and IFITM3, which are known to inhibit viral fusion. Our results reveal that the pH optimum of HA-driven membrane fusion of IAVs is a determinant of their sensitivity to IFN and IFITM proteins.\n \n IMPORTANCE\n The IFN system constitutes an important innate defense against viral infection. Substantial information is available on how IAVs avoid detection by sensors of the IFN system and disable IFN signaling pathways. Much less is known about the ability of IAVs to tolerate the antiviral activity of IFN-induced cellular proteins. The IFN-induced proteins of the IFITM family block IAV entry into target cells and can restrict viral spread and pathogenicity. Here we show for the first time that the sensitivity of IAVs to the IFN-induced antiviral state and IFITM2 and IFITM3 proteins depends on the pH value at which the viral HA undergoes a conformational transition and mediates membrane fusion. Our data imply that the high pH optimum of membrane fusion typical of zoonotic IAVs of gallinaceous poultry, such as H5N1 and H7N9, may contribute to their enhanced virulence in humans."],["dc.description.sponsorship"," European Commission Seventh Framework Programme https://doi.org/10.13039/501100000780"],["dc.description.sponsorship"," Deutsche Forschungsgemeinschaft https://doi.org/10.13039/501100001659"],["dc.description.sponsorship"," Deutsche Forschungsgemeinschaft https://doi.org/10.13039/501100001659"],["dc.description.sponsorship"," Deutsche Forschungsgemeinschaft https://doi.org/10.13039/501100001659"],["dc.description.sponsorship"," Leibniz-Gemeinschaft https://doi.org/10.13039/501100001664"],["dc.identifier.doi","10.1128/JVI.00246-17"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/114863"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-602"],["dc.relation.eissn","1098-5514"],["dc.relation.issn","0022-538X"],["dc.relation.orgunit","Deutsches Primatenzentrum"],["dc.rights.uri","https://journals.asm.org/non-commercial-tdm-license"],["dc.title","pH Optimum of Hemagglutinin-Mediated Membrane Fusion Determines Sensitivity of Influenza A Viruses to the Interferon-Induced Antiviral State and IFITMs"],["dc.type","journal_article"],["dc.type.internalPublication","unknown"],["dspace.entity.type","Publication"]]
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