首页> 美国卫生研究院文献>AIDS Research and Human Retroviruses >Short Communication: SAHA (Vorinostat) Induces CDK9 Thr-186 (T-Loop) Phosphorylation in Resting CD4+ T Cells: Implications for Reactivation of Latent HIV
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Short Communication: SAHA (Vorinostat) Induces CDK9 Thr-186 (T-Loop) Phosphorylation in Resting CD4+ T Cells: Implications for Reactivation of Latent HIV

机译:简短交流:SAHA(伏立诺他州)在静止的CD4 + T细胞中诱导CDK9 Thr-186(T环)磷酸化:对潜在HIV活化的影响

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摘要

The histone deacetylase inhibitor (HDACi) suberoylanilide hydroxyamic acid (SAHA), also known as vorinostat, has recently been reported to activate latent HIV-1 in patients undergoing antiretroviral therapy. It is possible that SAHA reactivation of latent viruses may involve effects on cellular transcription factors such as positive transcription elongation factor b (P-TEFb), a protein kinase whose core is composed of CDK9 and Cyclin T1. P-TEFb is recruited by the HIV-1 Tat protein to activate productive RNA polymerase II elongation of the integrated provirus. We found that SAHA treatment of isolated resting CD4+ T cells induced CDK9 Thr-186 (T-loop) phosphorylation in six of eight healthy donors and increased Cyclin T1 expression in one donor; Thr-186 phosphorylation is required for P-TEFb function. Disulfiram, another small molecule currently under evaluation in clinical trials for reactivation of latent HIV-1, was also found capable of inducing CDK9 Thr-186 phosphorylation and Cyclin T1 levels in resting CD4+ T cells from healthy donors. In a Jurkat CD4+ T cells HIV-1 latency system, disulfiram reactivated the latent provirus and induced CDK9 Thr-186 phosphorylation. Our findings suggest that small molecules capable of reactivating latent HIV-1 in resting CD4+ T cells may function in part by increasing CDK9 Thr-186 phosphorylation and perhaps Cyclin T1 expression, thereby up-regulating P-TEFb function.
机译:组蛋白脱乙酰基酶抑制剂(HDACi)亚磺酰苯胺羟基酰胺酸(SAHA),也称为伏立诺他,最近已报道其在接受抗逆转录病毒治疗的患者中激活潜在的HIV-1。 SAHA潜伏病毒的重新激活可能涉及对细胞转录因子的影响,例如正转录延伸因子b(P-TEFb),一种蛋白激酶,其核心由CDK9和Cyclin T1组成。 HIV-1 Tat蛋白募集P-TEFb,以激活整合型原病毒的生产性RNA聚合酶II延长。我们发现,SAHA治疗分离的静息CD4 + T细胞可诱导八位健康供体中的六位CDK9 Thr-186(T-loop)磷酸化,并增加一位供体中Cyclin T1的表达。 P-TEFb功能需要Thr-186磷酸化。还发现了在临床试验中正在评估潜在潜伏性HIV-1活化的另一小分子双硫仑,它能够诱导健康供体的静息CD4 + T细胞中CDK9 Thr-186磷酸化和Cyclin T1水平。 。在Jurkat CD4 + T细胞HIV-1潜伏期系统中,双硫仑重新激活了潜伏的原病毒并诱导CDK9 Thr-186磷酸化。我们的发现表明,能够在静止的CD4 + T细胞中激活潜在HIV-1的小分子可能部分通过增加CDK9 Thr-186磷酸化以及也许是Cyclin T1表达而起作用,从而上调P-TEFb功能。

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