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Neutralization-guided design of HIV-1 envelope trimers with high affinity for the unmutated common ancestor of CH235 lineage CD4bs broadly neutralizing antibodies

机译:对CH235谱系CD4bs广泛中和抗体的未突变共同祖先具有高亲和力的HIV-1包膜三聚体的中和指导设计

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摘要

The CD4 binding site (CD4bs) of the HIV-1 envelope glycoprotein is susceptible to multiple lineages of broadly neutralizing antibodies (bnAbs) that are attractive to elicit with vaccines. The CH235 lineage (VH1-46) of CD4bs bnAbs is particularly attractive because the most mature members neutralize 90% of circulating strains, do not possess long HCDR3 regions, and do not contain insertions and deletions that may be difficult to induce. We used virus neutralization to measure the interaction of CH235 unmutated common ancestor (CH235 UCA) with functional Env trimers on infectious virions to guide immunogen design for this bnAb lineage. Two Env mutations were identified, one in loop D (N279K) and another in V5 (G458Y), that acted synergistically to render autologous CH505 transmitted/founder virus susceptible to neutralization by CH235 UCA. Man5-enriched N-glycans provided additional synergy for neutralization. CH235 UCA bound with nanomolar affinity to corresponding soluble native-like Env trimers as candidate immunogens. A cryo-EM structure of CH235 UCA bound to Man5-enriched CH505.N279K.G458Y.SOSIP.664 revealed interactions of the antibody light chain complementarity determining region 3 (CDR L3) with the engineered Env loops D and V5. These results demonstrate that virus neutralization can directly inform vaccine design and suggest a germline targeting and reverse engineering strategy to initiate and mature the CH235 bnAb lineage.
机译:HIV-1包膜糖蛋白的CD4结合位点(CD4bs)对广泛中和的抗体(bnAbs)的多个谱系敏感,这很容易引起疫苗的感染。 CD4bs bnAbs的CH235谱系(VH1-46)特别吸引人,因为最成熟的成员中和了90%的循环菌株,不具有较长的HCDR3区域,并且不包含可能难以诱导的插入和缺失。我们使用病毒中和来测量CH235未突变共同祖先(CH235 UCA)与功能性Env三聚体在感染性病毒颗粒上的相互作用,以指导该bnAb谱系的免疫原设计。鉴定出两个Env突变,一个在D环中(N279K),另一个在V5(G458Y)中,它们协同作用使自体CH505传播/基础病毒易于被CH235 UCA中和。富含Man5的N-聚糖为中和提供了额外的协同作用。 CH235 UCA以纳摩尔亲和力结合到相应的可溶性天然样Env三聚体作为候选免疫原。与富含Man5的CH505.N279K.G458Y.SOSIP.664结合的CH235 UCA的冷冻EM结构揭示了抗体轻链互补决定区3(CDR L3)与工程化的Env环D和V5的相互作用。这些结果表明,病毒中和可以直接指导疫苗设计,并提出了针对种系的逆向工程策略,以启动和成熟CH235 bnAb谱系。

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