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Journal of Virology|February 15, 2013
TRIM22 inhibits influenza A virus infection by targeting the viral nucleoprotein for degradationAndrea Di Pietro, Anna Kajaste-Rudnitski, Alexandra Oteiza, et al.
Retrovirology|August 2, 2013
HIV-1 capsid undergoes coupled binding and isomerization by the nuclear pore protein NUP358Katsiaryna Bichel, Amanda J Price, Torsten Schaller, et al.
Journal of Virology|July 15, 2006
Cyclosporine increases human immunodeficiency virus type 1 vector transduction of primary mouse cellsJosh A Noser, Greg J Towers, Ryuta Sakuma, et al.
Frontiers in Immunology|October 24, 2017
Are Evolution and the Intracellular Innate Immune System Key Determinants in HIV Transmission?Rebecca P Sumner, Lucy G Thorne, Doug L Fink, et al.
Retrovirology|December 17, 2011
HIV-1 Group P is unable to antagonize human tetherin by Vpu, Env or NefDaniel Sauter, Stéphane Hué, Sarah J Petit, et al.
Cell Host & Microbe|December 4, 2018
Trivalent RING Assembly on Retroviral Capsids Activates TRIM5 Ubiquitination and Innate Immune SignalingAdam J Fletcher, Marina Vaysburd, Sarah Maslen, et al.
Proceedings of the National Academy of Sciences of the United States of America|November 4, 2010
Antibodies mediate intracellular immunity through tripartite motif-containing 21 (TRIM21)Donna L Mallery, William A McEwan, Susanna R Bidgood, et al.
The EMBO Journal|August 28, 2020
Disrupting HIV-1 capsid formation causes cGAS sensing of viral DNARebecca P Sumner, Lauren Harrison, Emma Touizer, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 22, 2008
Independent evolution of an antiviral TRIMCyp in rhesus macaquesSam J Wilson, Benjamin L J Webb, Laura M J Ylinen, et al.
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