Lu Manman, Hou Guangjin, Zhang Huilan, Suiter Christopher L, Ahn Jinwoo, Byeon In-Ja L, Perilla Juan R, Langmead Christopher J, Hung Ivan, Gor'kov Peter L, Gan Zhehong, Brey William, Aiken Christopher, Zhang Peijun, Schulten Klaus, Gronenborn Angela M, Polenova Tatyana
Department of Chemistry and Biochemistry, University of Delaware, Newark, DE 19716; Pittsburgh Center for HIV Protein Interactions, University of Pittsburgh School of Medicine, Pittsburgh, PA 15260;
Pittsburgh Center for HIV Protein Interactions, University of Pittsburgh School of Medicine, Pittsburgh, PA 15260; Department of Structural Biology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15260;
Proc Natl Acad Sci U S A. 2015 Nov 24;112(47):14617-22. doi: 10.1073/pnas.1516920112. Epub 2015 Nov 9.
Host factor protein Cyclophilin A (CypA) regulates HIV-1 viral infectivity through direct interactions with the viral capsid, by an unknown mechanism. CypA can either promote or inhibit viral infection, depending on host cell type and HIV-1 capsid (CA) protein sequence. We have examined the role of conformational dynamics on the nanosecond to millisecond timescale in HIV-1 CA assemblies in the escape from CypA dependence, by magic-angle spinning (MAS) NMR and molecular dynamics (MD). Through the analysis of backbone (1)H-(15)N and (1)H-(13)C dipolar tensors and peak intensities from 3D MAS NMR spectra of wild-type and the A92E and G94D CypA escape mutants, we demonstrate that assembled CA is dynamic, particularly in loop regions. The CypA loop in assembled wild-type CA from two strains exhibits unprecedented mobility on the nanosecond to microsecond timescales, and the experimental NMR dipolar order parameters are in quantitative agreement with those calculated from MD trajectories. Remarkably, the CypA loop dynamics of wild-type CA HXB2 assembly is significantly attenuated upon CypA binding, and the dynamics profiles of the A92E and G94D CypA escape mutants closely resemble that of wild-type CA assembly in complex with CypA. These results suggest that CypA loop dynamics is a determining factor in HIV-1's escape from CypA dependence.
宿主因子蛋白亲环素A(CypA)通过与病毒衣壳直接相互作用,以一种未知机制调节HIV-1病毒的感染性。CypA既可以促进也可以抑制病毒感染,这取决于宿主细胞类型和HIV-1衣壳(CA)蛋白序列。我们通过魔角旋转(MAS)核磁共振和分子动力学(MD)研究了在从依赖CypA逃逸过程中,HIV-1 CA组装体在纳秒到毫秒时间尺度上的构象动力学作用。通过分析野生型以及A92E和G94D CypA逃逸突变体的3D MAS NMR谱中的主链(1)H-(15)N和(1)H-(13)C偶极张量及峰强度,我们证明组装后的CA是动态的,特别是在环区。来自两种毒株的组装野生型CA中的CypA环在纳秒到微秒时间尺度上表现出前所未有的流动性,并且实验NMR偶极序参数与从MD轨迹计算得到的参数在定量上一致。值得注意的是,CypA结合后野生型CA HXB2组装体的CypA环动力学显著减弱,并且A92E和G94D CypA逃逸突变体的动力学谱与与CypA结合的野生型CA组装体的动力学谱非常相似。这些结果表明,CypA环动力学是HIV-1从依赖CypA逃逸的一个决定因素。