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HIV-1反式激活因子与人多巴胺转运体相互作用的分子机制

Molecular mechanism of HIV-1 Tat interacting with human dopamine transporter.

作者信息

Yuan Yaxia, Huang Xiaoqin, Midde Narasimha M, Quizon Pamela M, Sun Wei-Lun, Zhu Jun, Zhan Chang-Guo

机构信息

Molecular Modeling and Biopharmaceutical Center, College of Pharmacy, University of Kentucky, 789 South Limestone Street, Lexington, KY 40536.

Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, 789 South Limestone Street, Lexington, KY 40536.

出版信息

ACS Chem Neurosci. 2015 Apr 15;6(4):658-665. doi: 10.1021/acschemneuro.5b00001. Epub 2015 Feb 19.

Abstract

Nearly 70% of HIV-1-infected individuals suffer from HIV-associated neurocognitive disorders (HAND). HIV-1 transactivator of transcription (Tat) protein is known to synergize with abused drugs and exacerbate the progression of central nervous system (CNS) pathology. Cumulative evidence suggest that the HIV-1 Tat protein exerts the neurotoxicity through interaction with human dopamine transporter (hDAT) in the CNS. Through computational modeling and molecular dynamics (MD) simulations, we develop a three-dimensional (3D) structural model for HIV-1 Tat binding with hDAT. The model provides novel mechanistic insights concerning how HIV-1 Tat interacts with hDAT and inhibits dopamine uptake by hDAT. In particular, according to the computational modeling, Tat binds most favorably with the outward-open state of hDAT. Residues Y88, K92, and Y470 of hDAT are predicted to be key residues involved in the interaction between hDAT and Tat. The roles of these hDAT residues in the interaction with Tat are validated by experimental tests through site-directed mutagensis and dopamine uptake assays. The agreement between the computational and experimental data suggests that the computationally predicted hDAT-Tat binding mode and mechanistic insights are reasonable and provide a new starting point to design further pharmacological studies on the molecular mechanism of HIV-1-associated neurocognitive disorders.

摘要

近70%的HIV-1感染者患有与HIV相关的神经认知障碍(HAND)。已知HIV-1转录激活因子(Tat)蛋白会与滥用药物协同作用,加剧中枢神经系统(CNS)病变的进展。累积证据表明,HIV-1 Tat蛋白通过与中枢神经系统中的人类多巴胺转运体(hDAT)相互作用发挥神经毒性。通过计算建模和分子动力学(MD)模拟,我们构建了HIV-1 Tat与hDAT结合的三维(3D)结构模型。该模型为HIV-1 Tat如何与hDAT相互作用以及抑制hDAT对多巴胺的摄取提供了新的机制见解。特别是,根据计算建模,Tat与hDAT的外向开放状态结合最为有利。预测hDAT的Y88、K92和Y470残基是参与hDAT与Tat相互作用的关键残基。通过定点诱变和多巴胺摄取试验的实验测试验证了这些hDAT残基在与Tat相互作用中的作用。计算数据与实验数据之间的一致性表明,计算预测的hDAT-Tat结合模式和机制见解是合理的,并为设计关于HIV-1相关神经认知障碍分子机制的进一步药理学研究提供了新的起点。

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