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    Por favor, use este identificador para citar o enlazar este ítem: http://hdl.handle.net/10259/7997

    Título
    A Transient Homotypic Interaction Model for the Influenza A Virus NS1 Protein Effector Domain
    Autor
    Kerry, Philip S.
    Ayllón Barasoain, JuanAutoridad UBU Orcid
    Taylor, Margaret A.
    Hass, Claudia
    Lewis, Andrew
    García Sastre, Adolfo
    Randall, Richard E.
    Hale, Benjamin G.
    Russell, Rupert J.
    Publicado en
    PLoS ONE. 2011, V. 6, n. 3, e17946
    Editorial
    Public Library of Science
    Fecha de publicación
    2011
    DOI
    10.1371/journal.pone.0017946
    Resumen
    Influenza A virus NS1 protein is a multifunctional virulence factor consisting of an RNA binding domain (RBD), a short linker, an effector domain (ED), and a C-terminal ‘tail’. Although poorly understood, NS1 multimerization may autoregulate its actions. While RBD dimerization seems functionally conserved, two possible apo ED dimers have been proposed (helix-helix and strand-strand). Here, we analyze all available RBD, ED, and full-length NS1 structures, including four novel crystal structures obtained using EDs from divergent human and avian viruses, as well as two forms of a monomeric ED mutant. The data reveal the helix-helix interface as the only strictly conserved ED homodimeric contact. Furthermore, a mutant NS1 unable to form the helix-helix dimer is compromised in its ability to bind dsRNA efficiently, implying that ED multimerization influences RBD activity. Our bioinformatical work also suggests that the helix-helix interface is variable and transient, thereby allowing two ED monomers to twist relative to one another and possibly separate. In this regard, we found a mAb that recognizes NS1 via a residue completely buried within the ED helix-helix interface, and which may help highlight potential different conformational populations of NS1 (putatively termed ‘helix-closed’ and ‘helix-open’) in virus-infected cells. ‘Helix-closed’ conformations appear to enhance dsRNA binding, and ‘helix-open’ conformations allow otherwise inaccessible interactions with host factors. Our data support a new model of NS1 regulation in which the RBD remains dimeric throughout infection, while the ED switches between several quaternary states in order to expand its functional space. Such a concept may be applicable to other small multifunctional proteins.
    Materia
    Medicina
    Medicine
    Salud
    Health
    Microbiología
    Microbiology
    Enfermedades infecciosas
    Communicable diseases
    URI
    http://hdl.handle.net/10259/7997
    Versión del editor
    https://doi.org/10.1371/journal.pone.0017946
    Aparece en las colecciones
    • Artículos OHM
    Atribución 4.0 Internacional
    Documento(s) sujeto(s) a una licencia Creative Commons Atribución 4.0 Internacional
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    Nombre:
    Kerry-PlosOne_2011.pdf
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