首页> 美国卫生研究院文献>PLoS Pathogens >The SOCS-Box of HIV-1 Vif Interacts with ElonginBC by Induced-Folding to Recruit Its Cul5-Containing Ubiquitin Ligase Complex
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The SOCS-Box of HIV-1 Vif Interacts with ElonginBC by Induced-Folding to Recruit Its Cul5-Containing Ubiquitin Ligase Complex

机译:HIV-1 Vif的SOCS盒与ElonginBC的诱导折叠相互作用以招募其含有Cul5的泛素连接酶复合物。

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摘要

The HIV-1 viral infectivity factor (Vif) protein recruits an E3 ubiquitin ligase complex, comprising the cellular proteins elongin B and C (EloBC), cullin 5 (Cul5) and RING-box 2 (Rbx2), to the anti-viral proteins APOBEC3G (A3G) and APOBEC3F (A3F) and induces their polyubiquitination and proteasomal degradation. In this study, we used purified proteins and direct in vitro binding assays, isothermal titration calorimetry and NMR spectroscopy to describe the molecular mechanism for assembly of the Vif-EloBC ternary complex. We demonstrate that Vif binds to EloBC in two locations, and that both interactions induce structural changes in the SOCS box of Vif as well as EloBC. In particular, in addition to the previously established binding of Vif's BC box to EloC, we report a novel interaction between the conserved Pro-Pro-Leu-Pro motif of Vif and the C-terminal domain of EloB. Using cell-based assays, we further show that this interaction is necessary for the formation of a functional ligase complex, thus establishing a role of this motif. We conclude that HIV-1 Vif engages EloBC via an induced-folding mechanism that does not require additional co-factors, and speculate that these features distinguish Vif from other EloBC specificity factors such as cellular SOCS proteins, and may enhance the prospects of obtaining therapeutic inhibitors of Vif function.
机译:HIV-1病毒感染因子(Vif)蛋白募集E3泛素连接酶复合物,其中包括细胞蛋白elongin B和C(EloBC),cullin 5(Cul5)和RING-box 2(Rbx2),成为抗病毒蛋白APOBEC3G(A3G)和APOBEC3F(A3F)并诱导其多聚泛素化和蛋白酶体降解。在这项研究中,我们使用纯化的蛋白质和直接的体外结合测定,等温滴定量热法和NMR光谱来描述Vif-EloBC三元复合物组装的分子机理。我们证明Vif在两个位置绑定到EloBC,并且两种相互作用都在Vif的SOCS盒以及EloBC中引起结构变化。特别是,除了先前建立的Vif的BC框与EloC的结合以外,我们还报道了Vif的Pro-Pro-Leu-Pro保守基序与EloB的C端结构域之间的新型相互作用。使用基于细胞的分析,我们进一步表明这种相互作用对于功能性连接酶复合物的形成是必需的,从而建立了该基序的作用。我们得出的结论是,HIV-1 Vif通过不需要其他辅助因子的诱导折叠机制与EloBC结合,并推测这些特征将Vif与其他EloBC特异性因子(例如细胞SOCS蛋白)区分开来,并且可能会提高获得治疗的前景。 Vif功能的抑制剂。

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