首页> 外文期刊>Retrovirology >Proteomic analysis of HIV-1 Nef cellular binding partners reveals a role for exocyst complex proteins in mediating enhancement of intercellular nanotube formation
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Proteomic analysis of HIV-1 Nef cellular binding partners reveals a role for exocyst complex proteins in mediating enhancement of intercellular nanotube formation

机译:对HIV-1 Nef细胞结合伴侣的蛋白质组学分析揭示了囊外复合蛋白在介导细胞间纳米管形成增强中的作用

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Background HIV-1 Nef protein contributes to pathogenesis via multiple functions that include enhancement of viral replication and infectivity, alteration of intracellular trafficking, and modulation of cellular signaling pathways. Nef stimulates formation of tunneling nanotubes and virological synapses, and is transferred to bystander cells via these intercellular contacts and secreted microvesicles. Nef associates with and activates Pak2, a kinase that regulates T-cell signaling and actin cytoskeleton dynamics, but how Nef promotes nanotube formation is unknown. Results To identify Nef binding partners involved in Pak2-association dependent Nef functions, we employed tandem mass spectrometry analysis of Nef immunocomplexes from Jurkat cells expressing wild-type Nef or Nef mutants defective for the ability to associate with Pak2 (F85L, F89H, H191F and A72P, A75P in NL4-3). We report that wild-type, but not mutant Nef, was associated with 5 components of the exocyst complex (EXOC1, EXOC2, EXOC3, EXOC4, and EXOC6), an octameric complex that tethers vesicles at the plasma membrane, regulates polarized exocytosis, and recruits membranes and proteins required for nanotube formation. Additionally, Pak2 kinase was associated exclusively with wild-type Nef. Association of EXOC1, EXOC2, EXOC3, and EXOC4 with wild-type, but not mutant Nef, was verified by co-immunoprecipitation assays in Jurkat cells. Furthermore, shRNA-mediated depletion of EXOC2 in Jurkat cells abrogated Nef-mediated enhancement of nanotube formation. Using bioinformatic tools, we visualized protein interaction networks that reveal functional linkages between Nef, the exocyst complex, and the cellular endocytic and exocytic trafficking machinery. Conclusions Exocyst complex proteins are likely a key effector of Nef-mediated enhancement of nanotube formation, and possibly microvesicle secretion. Linkages revealed between Nef and the exocyst complex suggest a new paradigm of exocyst involvement in polarized targeting for intercellular transfer of viral proteins and viruses.
机译:背景技术HIV-1 Nef蛋白通过多种功能促进发病机理,包括增强病毒复制和感染力,改变细胞内运输以及调节细胞信号通路。 Nef刺激隧穿纳米管和病毒突触的形成,并通过这些细胞间接触和分泌的微泡转移到旁观者细胞。 Nef与Pak2结合并激活Pak2,Pak2是一种调节T细胞信号传导和肌动蛋白细胞骨架动力学的激酶,但是Nef如何促进纳米管形成尚不清楚。结果为了鉴定参与Pak2关联依赖的Nef功能的Nef结合伴侣,我们采用串联质谱分析了来自表达野生型Nef或Nef突变体的Jurkat细胞的Nef免疫复合物,这些突变体与Pak2(F85L,F89H,H191F和NL4-3中的A72P,A75P)。我们报告说,野生型,但不是突变的Nef,与囊外复合物(EXOC1,EXOC2,EXOC3,EXOC4和EXOC6)的5个成分相关联,这是一种八聚体复合物,束缚质膜上的囊泡,调节极化的胞吐作用,并且募集形成纳米管所需的膜和蛋白质。此外,Pak2激酶仅与野生型Nef相关。通过Jurkat细胞中的免疫共沉淀试验证实了EXOC1,EXOC2,EXOC3和EXOC4与野生型(而非突变Nef)的关联。此外,Jurkat细胞中shRNA介导的EXOC2耗竭消除了Nef介导的纳米管形成增强。使用生物信息学工具,我们可视化了蛋白质相互作用网络,揭示了Nef,囊外复合物以及细胞内吞和胞外运输机制之间的功能联系。结论外囊复合蛋白可能是Nef介导的纳米管形成增强和微囊泡分泌增强的关键效应物。 Nef和囊外复合体之间揭示的联系表明,囊外参与极化靶向病毒蛋白和病毒的细胞间转移的新范式。

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