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Journal of Virology|June 17, 2016
Capsid-CPSF6 Interaction Is Dispensable for HIV-1 Replication in Primary Cells but Is Selected during Virus Passage In VivoAkatsuki Saito, Matthew S Henning, Erik Serrao, et al.
The Journal of Biological Chemistry|September 21, 2016
A New Class of Allosteric HIV-1 Integrase Inhibitors Identified by Crystallographic Fragment Screening of the Catalytic Core DomainDisha Patel, Janet Antwi, Pratibha C Koneru, et al.
Mbio|February 27, 2025
Spatiotemporal binding of cyclophilin A and CPSF6 to capsid regulates HIV-1 nuclear entry and integrationZachary Ingram, Christopher Kline, Alexandra K Hughson, et al.
Mbio|February 6, 2023
The Drug-Induced Interface That Drives HIV-1 Integrase Hypermultimerization and Loss of FunctionMatthew R Singer, Tung Dinh, Lev Levintov, et al.
Biorxiv : the Preprint Server for Biology|February 8, 2024
Oligomeric HIV-1 Integrase Structures Reveal Functional Plasticity for Intasome Assembly and RNA BindingTao Jing, Zelin Shan, Tung Dinh, et al.
Cell Host & Microbe|September 4, 2018
Capsid-CPSF6 Interaction Licenses Nuclear HIV-1 Trafficking to Sites of Viral DNA IntegrationVasudevan Achuthan, Jill M Perreira, Gregory A Sowd, et al.
Journal of Acquired Immune Deficiency Syndromes (1999)|September 14, 2023
Pathways and Intersections: Multifaceted Approaches to Engage Individuals From Underrepresented and Marginalized Communities in HIV Research and Career DevelopmentWhitney C Irie, Pooja Chitneni, Tiffany R Glynn, et al.
Elife|May 24, 2019
HIV-1 integrase tetramers are the antiviral target of pyridine-based allosteric integrase inhibitorsPratibha C Koneru, Ashwanth C Francis, Nanjie Deng, et al.
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