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Virology|February 26, 2014
Transcriptional control of HIV latency: cellular signaling pathways, epigenetics, happenstance and the hope for a cureUri Mbonye, Jonathan KarnCurrent HIV Research|January 4, 2012
Control of HIV latency by epigenetic and non-epigenetic mechanismsUri Mbonye, Jonathan KarnAnnual Review of Virology|July 19, 2017
The Molecular Basis for Human Immunodeficiency Virus LatencyUri Mbonye, Jonathan KarnTrends in Immunology|December 12, 2022
New insights into transcription elongation control of HIV-1 latency and reboundUri Mbonye, Fredrick Kizito, Jonathan KarnSTAR Protocols|October 19, 2024
Protocol for intracellular immunofluorescence measurements of latent HIV reactivation in a primary CD4<sup>+</sup> T cell modelUri Mbonye, Anna Agaponova, Muda Yang, et al.Journal of Molecular Biology|July 19, 2011
T-cell receptor signaling enhances transcriptional elongation from latent HIV proviruses by activating P-TEFb through an ERK-dependent pathwayYoung Kyeung Kim, Uri Mbonye, Joseph Hokello, et al.Plos Pathogens|September 16, 2021
Biogenesis of P-TEFb in CD4+ T cells to reverse HIV latency is mediated by protein kinase C (PKC)-independent signaling pathwaysUri Mbonye, Konstantin Leskov, Meenakshi Shukla, et al.Methods in Molecular Biology (Clifton, N.J.)|January 5, 2022
A Reliable Primary Cell Model for HIV Latency: The QUECEL (Quiescent Effector Cell Latency) MethodMeenakshi Shukla, Fredrick Kizito, Uri Mbonye, et al.The Journal of Biological Chemistry|May 11, 2018
Cyclin-dependent kinase 7 (CDK7)-mediated phosphorylation of the CDK9 activation loop promotes P-TEFb assembly with Tat and proviral HIV reactivationUri Mbonye, Benlian Wang, Giridharan Gokulrangan, et al.Pageof 2