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Autophagy|November 8, 2023
ATG9B is a tissue-specific homotrimeric lipid scramblase that can compensate for ATG9AGeorge N Chiduza, Acely Garza-Garcia, Eugenia Almacellas, et al.Proceedings of the National Academy of Sciences of the United States of America|May 2, 2006
Evolution of a cytoplasmic tripartite motif (TRIM) protein in cows that restricts retroviral infectionZhihai Si, Nick Vandegraaff, Colm O'huigin, et al.Science (New York, N.Y.)|February 1, 2020
Structural basis of second-generation HIV integrase inhibitor action and viral resistanceNicola J Cook, Wen Li, Dénes Berta, et al.Journal of Virology|September 20, 2013
Bromo- and extraterminal domain chromatin regulators serve as cofactors for murine leukemia virus integrationSaumya Shree Gupta, Tobias Maetzig, Goedele N Maertens, et al.Antimicrobial Agents and Chemotherapy|November 19, 2002
env chimeric virus technology for evaluating human immunodeficiency virus susceptibility to entry inhibitorsValery Fikkert, Peter Cherepanov, Kristel Van Laethem, et al.Nature Communications|June 24, 2017
Cdt1 stabilizes an open MCM ring for helicase loadingJordi Frigola, Jun He, Kerstin Kinkelin, et al.Nucleic Acids Research|August 10, 2022
B-to-A transition in target DNA during retroviral integrationIlona K Jóźwik, Wen Li, Da-Wei Zhang, et al.Cell Host & Microbe|October 15, 2014
Structural insight into HIV-1 restriction by MxBJennifer L Fribourgh, Henry C Nguyen, Kenneth A Matreyek, et al.Antiviral Chemistry & Chemotherapy|September 1, 2005
Mutations in both env and gag genes are required for HIV-1 resistance to the polysulfonic dendrimer SPL2923, as corroborated by chimeric virus technologyAnke Hantson, Valery Fikkert, Barbara Van Remoortel, et al.The Journal of Biological Chemistry|July 6, 2023
Heme binding to the SARS-CoV-2 spike glycoproteinSamuel L Freeman, A Sofia F Oliveira, Andrea E Gallio, et al.Pageof 18