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Tat-CDK9-Cyclin 结合动力学的计算研究及其对转录依赖型 HIV 潜伏的影响。

A computational study of Tat-CDK9-Cyclin binding dynamics and its implication in transcription-dependent HIV latency.

机构信息

Institute of Biophysics and Department of Physics, Central China Normal University, Wuhan 430079, China.

出版信息

Phys Chem Chem Phys. 2020 Nov 18;22(44):25474-25482. doi: 10.1039/d0cp03662e.

Abstract

HIV is a virus that attacks the T cells. HIV may either actively replicate or become latent within host cells for years. Since HIV uses its own protein Tat to hijack the host CDK9-Cyclin complex for transcription, Tat is implicated in transcription-dependent HIV latency. To quantify the impact of Tat binding, we propose a computational framework to probe the dynamics of the CDK9-Cyclin interface and the ATP pocket reorganization upon binding by different Tat mutants. Specifically, we focus on mutations at three Tat residues P10, W11, and N12 that are known to interact directly with CDK9 based on the crystal structure of the Tat-CDK9-Cyclin complex. Our molecular dynamics simulations show that the CDK9-Cyclin interface becomes slightly weaker for P10S and W11R mutants but tighter for the K12N mutant. Furthermore, the side chain orientation of residue K48 in the ATP pocket of CDK9 is similar to the inactive state in P10S and W11R simulations, but similar to the active state in K12N simulations. These are consistent with some existing but puzzling observations of latency for these mutants. This framework may hence help gain a better understanding of the role of Tat in the transcription-dependent HIV latency establishment.

摘要

HIV 是一种攻击 T 细胞的病毒。HIV 可能会在宿主细胞内多年主动复制或潜伏。由于 HIV 利用自身的 Tat 蛋白劫持宿主 CDK9-细胞周期蛋白复合物进行转录,因此 Tat 与转录依赖性 HIV 潜伏有关。为了量化 Tat 结合的影响,我们提出了一个计算框架来探测 CDK9-细胞周期蛋白界面的动力学以及不同 Tat 突变体结合时 ATP 口袋的重组。具体来说,我们专注于三个 Tat 残基 P10、W11 和 N12 的突变,这些残基基于 Tat-CDK9-细胞周期蛋白复合物的晶体结构被认为与 CDK9 直接相互作用。我们的分子动力学模拟表明,P10S 和 W11R 突变体的 CDK9-细胞周期蛋白界面稍微变弱,但 K12N 突变体的界面变紧。此外,CDK9 中 ATP 口袋中残基 K48 的侧链取向与 P10S 和 W11R 模拟中的非活性状态相似,但与 K12N 模拟中的活性状态相似。这些与这些突变体潜伏的一些现有但令人费解的观察结果一致。因此,该框架可能有助于更好地理解 Tat 在转录依赖性 HIV 潜伏建立中的作用。

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