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Histone decrotonylation plays a distinct role in HIV latency

SCIENCE ADVANCES. 2018-08; 
Xiaoyi Li; Dajiang Li; Yuyang Tang; Marie Nearing; Benjamin Varco-Merth; Hongjie Chen; Davey Smith; Sara Gianella; Nancie M. Archin; Afam A. Okoye; Satya Dandekar; David M. Margolis; Venkat R. Chirasani; Ryan H. Gumpper; Guochun Jiang
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Plasmid DNA Preparation nucleofection A plasmid encoding WT FLAG-tagged HDAC3 was obtained from Addgene, and site-directed mutants (D57A, Q113A, R265A, and R301A) were generated by GenScript. For nucleofection, 2D10 cells were pelleted (90 g for 10 min), washed with PBS, and resuspended in SE Cell Line Nucleofector Solution at a density of Get A Quote

摘要

The role of epigenetic regulation in HIV latency remains incompletely understood. We show that histone deacetylase 3 (HDAC3) inhibits trans-activator of transcription (Tat)-mediated HIV transcription through histone decrotonylation (HDCR), independent of deacetylase activity. Chemical biology approaches identified selective HDCR inhibitors (HDCRis) that reverse HIV latency with minimal impact on other histone acylations. Although HDAC2, HDAC3, and HDAC8 exhibit HDCR activity, genetic and chemical studies reveal that the HDCRi citarinostat is selective for HDAC3 and HDAC8. Molecular docking suggests that HDCRi binds outside the zinc-binding pocket, distinct from the classical HDAC inhibitor vorinostat (SAHA, sub... More

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