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Validation of a novel secretion modification region (SMR) of HIV-1 Nef using cohort sequence analysis and molecular modeling

机译:使用群组序列分析和分子建模验证HIV-1 NEF的新型分泌修饰区域(SMR)

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摘要

The HIV-1 accessory protein Nef plays an active role in the pathogenesis of AIDS by its numerous cellular interactions that facilitate the release of virus particles. This 27 kDa protein is required for maintenance of the viral replication in HIV, and is also known to contribute to immune evasion, blocking of apoptosis in virus-infected cells and enhancement of virus infectivity. Nef has been shown to be secreted and is present on the surface of virus-infected cells. Recent studies from our laboratory have shown that the Nef protein is secreted from nef-transfected and HIV-1-infected cells in small exosome-like vesicles (40–100 nm diam.) that do not contain virions. We have identified three amino-terminal domains of Nef as necessary for secretion: (i) the four arginine residues (17,19,21, 22) comprising the basic region; (ii) the phosphofurin acidic cluster sequence (PACS) composed of four glutamic acid residues (61–64); (iii) a previously unknown motif spanning amino acid residues 65–69 (VGFPV) which we named the secretion modification region (SMR). In this study, we have used population-based phylogeny data and sequence analysis to characterize the conservation of the Nef SMR domain that regulates vesicle secretion. We have performed in silico computational chemistry analysis involving molecular dynamic structure modeling of mutations in the SMR motif. Sequence analysis of Nef from HIV-1-infected patients, including slow progressors (SP), long term progressors (LTP) and long term non-progressors (LTNP) demonstrated 99 % conservation of the Nef SMR motif. Computational analysis including modeling of wild-type HIV-1 Nef and V66A Nef SMR mutant using structural homology and molecular dynamics of ligand-associated interactions indicated significant structural changes in the Nef mutant, thus supporting the importance of the SMR domain for mediating Nef vesicle secretion.
机译:HIV-1辅助蛋白NEF通过其许多细胞相互作用在助剂的发病机制中起积极作用,其有助于释放病毒颗粒。这种27kDA蛋白是维持艾滋病毒病毒复制所必需的,并且还已知有助于免疫逃避,在病毒感染细胞中抑制细胞凋亡和增强病毒感染性。 NEF已被证明是分泌的并且存在于病毒感染细胞的表面上。我们实验室的最近研究表明,NEF蛋白质在没有含有病毒粒子的小外出囊泡(40-100nm直径)中从NEF转染和HIV-1感染细胞中分泌。我们已经确定了三种Nef的氨基末端结构域,以便分泌:(i)包含基本区域的四个精氨酸残基(17,19,21,22); (ii)由四个谷氨酸残基组成的磷疏血素酸性簇序列(PACS)(61-64); (iii)我们将氨基酸残基(VGFPV)命名为分泌修饰区域(SMR)的先前未知的基氨基酸残基。在这项研究中,我们使用基于人群的系统发育数据和序列分析,以表征调节囊泡分泌的NEF SMR结构域的守恒。我们在SILICO计算化学分析中进行了涉及SMR主题突变的分子动态结构建模。来自HIV-1感染患者的NEF的序列分析,包括缓慢进展(SP),长期前进者(LTP)和长期非进展(LTNP)展示了NEF SMR主题的99%。计算分析,包括使用结构同源性和配体相关相互作用的结构同源性和分子动力学的野生型HIV-1 NEF和V66A NEF SMR突变体的计算分析表明了NEF突变体中的显着结构变化,从而支持SMR结构域的重要性介导NEF囊泡分泌。

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