The Birnavirus Crystal Structure Reveals Structural Relationships among Icosahedral Viruses

Double-stranded RNA virions are transcriptionally competent icosahedral particles that must translocate across a lipid bilayer to function within the cytoplasm of the target cell. Birnaviruses are unique among dsRNA viruses as they have a single T = 13 icosahedral shell, lacking the characteristic i...

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Veröffentlicht in:Cell 2005-03, Vol.120 (6), p.761-772
Hauptverfasser: Coulibaly, Fasséli, Chevalier, Christophe, Gutsche, Irina, Pous, Joan, Navaza, Jorge, Bressanelli, Stéphane, Delmas, Bernard, Rey, Félix A.
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Sprache:eng
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Zusammenfassung:Double-stranded RNA virions are transcriptionally competent icosahedral particles that must translocate across a lipid bilayer to function within the cytoplasm of the target cell. Birnaviruses are unique among dsRNA viruses as they have a single T = 13 icosahedral shell, lacking the characteristic inner capsid observed in the others. We determined the crystal structures of the T = 1 subviral particle (260 Å in diameter) and of the T = 13 intact virus particle (700 Å in diameter) of an avian birnavirus to 3 Å and 7 Å resolution, respectively. Our results show that VP2, the only component of the virus icosahedral capsid, is homologous both to the capsid protein of positive-strand RNA viruses, like the T = 3 nodaviruses, and to the T = 13 capsid protein of members of the Reoviridae family of dsRNA viruses. Together, these results provide important insights into the multiple functions of the birnavirus capsid and reveal unexpected structural relationships among icosahedral viruses.
ISSN:0092-8674
1097-4172
DOI:10.1016/j.cell.2005.01.009