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Resistance of Subtype C HIV-1 Strains to Anti-V3 Loop Antibodies

机译:C亚型HIV-1菌株对抗V3环抗体的抗性

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摘要

HIV-1's subtype C V3 loop consensus sequence exhibits increased resistance to anti-V3 antibody-mediated neutralization as compared to the subtype B consensus sequence. The dynamic 3D structure of the consensus C V3 loop crown, visualized by ab initio folding, suggested that the resistance derives from structural rigidity and non-β-strand secondary protein structure in the N-terminal strand of the β-hairpin of the V3 loop crown, which is where most known anti-V3 loop antibodies bind. The observation of either rigidity or non-β-strand structure in this region correlated with observed resistance to antibody-mediated neutralization in a series of chimeric pseudovirus (psV) mutants. The results suggest the presence of an epitope-independent, neutralization-relevant structural difference in the antibody-targeted region of the V3 loop crown between subtype C and subtype B, a difference that we hypothesize may contribute to the divergent pattern of global spread between these subtypes. As antibodies to a variable loop were recently identified as an inverse correlate of risk for HIV infection, the structure-function relationships discussed in this study may have relevance to HIV vaccine research.
机译:与B亚型共有序列相比,HIV-1的亚型C V3环共有序列表现出更高的抗V3抗体介导的中和性。从头开始折叠就可以看到共有C V3环冠的动态3D结构,表明抗性源自V3环的β-发夹N末端链的结构刚度和非β链二级蛋白质结构冠,这是最著名的抗V3环抗体结合的地方。在该区域中观察到的刚性或非β链结构与在一系列嵌合伪病毒(psV)突变体中观察到的对抗体介导的中和的抗性相关。结果表明在亚型C和B型之间V3环冠的抗体靶向区域中存在与表位无关的,中和相关的结构差异,我们假设这种差异可能会导致这些差异在全球范围内扩散亚型。由于最近发现可变环抗体与HIV感染风险呈反相关,因此本研究中讨论的结构-功能关系可能与HIV疫苗研究有关。

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