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Somatic mutations of the immunoglobulin framework are generally required for broad and potent HIV-1 neutralization

机译:广泛有效的HIV-1中和通常需要免疫球蛋白框架的体细胞突变

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摘要

Broadly neutralizing antibodies (bNAbs) to HIV-1 can prevent infection and are therefore of great importance for HIV-1 vaccine design. Notably, bNAbs are highly somatically mutated and generated by a fraction of HIV-1-infected individuals several years after infection. Antibodies typically accumulate mutations in the complementarity determining region (CDR) loops, which usually contact the antigen. The CDR loops are scaffolded by canonical framework regions (FWRs) that are both resistant to and less tolerant of mutations. Here, we report that in contrast to most antibodies, including those with limited HIV-1 neutralizing activity, most bNAbs require somatic mutations in their FWRs. Structural and functional analyses reveal that somatic mutations in FWR residues enhance breadth and potency by providing increased flexibility and/or direct antigen contact. Thus, in bNAbs, FWRs play an essential role beyond scaffolding the CDR loops and their unusual contribution to potency and breadth should be considered in HIV-1 vaccine design.
机译:针对HIV-1的广泛中和抗体(bNAb)可以预防感染,因此对于HIV-1疫苗设计非常重要。值得注意的是,bNAbs在感染后数年内高度体细胞突变,并由一部分感染HIV-1的个体产生。抗体通常在互补决定区(CDR)环中积累突变,该突变通常与抗原接触。 CDR环由对突变具有抗性和较低耐受性的规范框架区(FWR)支撑。在这里,我们报道与大多数抗体相反,包括那些具有有限HIV-1中和活性的抗体,大多数bNAb的FWR需要体细胞突变。结构和功能分析表明,FWR残基的体细胞突变通过提供更大的柔韧性和/或直接的抗原接触而提高了广度和效力。因此,在bNAb中,FWR除了在CDR环架上起支架作用外,还起着重要作用,因此在HIV-1疫苗设计中应考虑它们对效价和广度的不寻常贡献。

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