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Plos Pathogens|December 31, 2019
Cross-talk between microglia and neurons regulates HIV latencyDavid Alvarez-Carbonell, Fengchun Ye, Nirmala Ramanath, et al.Plos Pathogens|July 7, 2022
Recruitment of the CoREST transcription repressor complexes by Nerve Growth factor IB-like receptor (Nurr1/NR4A2) mediates silencing of HIV in microglial cellsFengchun Ye, David Alvarez-Carbonell, Kien Nguyen, et al.Scientific Reports|March 5, 2016
Elimination of HIV-1 Genomes from Human T-lymphoid Cells by CRISPR/Cas9 Gene EditingRafal Kaminski, Yilan Chen, Tracy Fischer, et al.Journal of Virology|July 1, 2011
Epigenetic silencing of HIV-1 by the histone H3 lysine 27 methyltransferase enhancer of Zeste 2Julia Friedman, Won-Kyung Cho, Chung K Chu, et al.Frontiers in Immunology|October 7, 2016
HIV Latency-Reversing Agents Have Diverse Effects on Natural Killer Cell FunctionCarolina Garrido, Adam M Spivak, Natalia Soriano-Sarabia, et al.Scientific Reports|August 17, 2016
Negative Feedback Regulation of HIV-1 by Gene Editing StrategyRafal Kaminski, Yilan Chen, Julian Salkind, et al.Journal of Virology|July 11, 2014
The histone deacetylase inhibitor vorinostat (SAHA) increases the susceptibility of uninfected CD4+ T cells to HIV by increasing the kinetics and efficiency of postentry viral eventsMark B Lucera, Carisa A Tilton, Hongxia Mao, et al.Nucleic Acids Research|November 28, 2018
An ultra-high affinity ligand of HIV-1 TAR reveals the RNA structure recognized by P-TEFbMatthew D Shortridge, Paul T Wille, Alisha N Jones, et al.Virology|December 3, 2014
Short chain fatty acids potently induce latent HIV-1 in T-cells by activating P-TEFb and multiple histone modificationsBiswajit Das, Curtis Dobrowolski, Abdel-Malek Shahir, et al.Genes & Development|October 17, 2014
A gene-specific role for the Ssu72 RNAPII CTD phosphatase in HIV-1 Tat transactivationYupeng Chen, Lirong Zhang, Conchi Estarás, et al.Pageof 8