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The KAT5-Acetyl-Histone4-Brd4 axis silences HIV-1 transcription and promotes viral latency

机译:KAT5-乙酰基 - 组蛋白4-BRD4轴沉默HIV-1转录并促进病毒潜伏期

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摘要

The bromodomain protein Brd4 promotes HIV-1 latency by competitively inhibiting P-TEFb-mediated transcription induced by the virus-encoded Tat protein. Brd4 is recruited to the HIV LTR by interactions with acetyl-histones3 (AcH3) and AcH4. However, the precise modification pattern that it reads and the writer for generating this pattern are unknown. By examining a pool of latently infected proviruses with diverse integration sites, we found that the LTR characteristically has low AcH3 but high AcH4 content. This unusual acetylation profile attracts Brd4 to suppress the interaction of Tat with the host super elongation complex (SEC) that is essential for productive HIV transcription and latency reversal. KAT5 (lysine acetyltransferase 5), but not its paralogs KAT7 and KAT8, is found to promote HIV latency through acetylating H4 on the provirus. Antagonizing KAT5 removes AcH4 and Brd4 from the LTR, enhances the SEC loading, and reverses as well as delays, the establishment of latency. The pro-latency effect of KAT5 is confirmed in a primary CD4+ T cell latency model as well as cells from ART-treated patients. Our data thus indicate the KAT5-AcH4-Brd4 axis as a key regulator of latency and a potential therapeutic target to reactivate latent HIV reservoirs for eradication.
机译:溴琼蛋白BRD4通过竞争性地抑制病毒编码的TAT蛋白诱导的P-TEFB介导的转录来促进HIV-1等待时间。 BRD4通过与乙酰基团3(ACH3)和ACH的相互作用募集到HIV LTR。然而,它读取的精确修改模式以及用于生成该模式的作者是未知的。通过审查具有不同集成站点的潜在感染的潜水池,我们发现LTR特征性地具有低ACH3但高ACH4内容。这种不寻常的乙酰化曲线吸引了BRD4以抑制TAT与宿主超长伸长率复合物(SEC)的相互作用,这对于生产HIV转录和潜伏期逆转至关重要。 KAT5(赖氨酸乙酰转移酶5),但不是其副蛋白酶KAT7和KAT8,发现通过潜水症上的乙酰化H4促进HIV潜伏量。对抗KAT5从LTR中删除ACH4和BRD4,增强SEC加载,并逆转以及延迟,建立延迟。 KAT5的潜水效应在初级CD4 + T细胞延迟模型中确认以及来自艺术处理患者的细胞。因此,我们的数据指示KAT5-ACH4-BRD4轴作为延迟的关键调节器和潜在的治疗目标,以重新激活潜伏的艾滋病毒储存器的根除。

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