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A sequestered fusion peptide in the structure of an HIV-1 transmitted founder envelope trimer

机译:HIV-1传播的创始人包膜三聚体结构中的螯合融合肽

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摘要

The envelope protein of human immunodeficiency virus-1 (HIV-1) and its fusion peptide are essential for cell entry and vaccine design. Here, we describe the 3.9-Å resolution structure of an envelope protein trimer from a very early transmitted founder virus (CRF01_AE T/F100) complexed with Fab from the broadly neutralizing antibody (bNAb) 8ANC195. The overall T/F100 trimer structure is similar to other reported “closed” state prefusion trimer structures. In contrast, the fusion peptide, which is exposed to solvent in reported closed structures, is sequestered (buried) in the hydrophobic core of the T/F100 trimer. A buried conformation has previously been observed in “open” state structures formed after CD4 receptor binding. The T/F100 trimer binds poorly to bNAbs including the fusion peptide-specific bNAbs PGT151 and VRC34.01. The T/F100 structure might represent a prefusion state, intermediate between the closed and open states. These observations are relevant to mechanisms of HIV-1 transmission and vaccine design.
机译:人类免疫缺陷病毒1(HIV-1)的包膜蛋白及其融合肽对于细胞进入和疫苗设计至关重要。在这里,我们描述了一个与来自广泛中和抗体(bNAb)8ANC195的Fab复合的非常早期传播的创始人病毒(CRF01_AE T / F100)的包膜蛋白三聚体的3.9-分辨率结构。 T / F100三聚体的整体结构与其他报道的“封闭”状态的预融合三聚体结构相似。相反,以报告的封闭结构暴露于溶剂中的融合肽被隔离(埋藏)在T / F100三聚体的疏水核中。先前已经观察到在CD4受体结合后形成的“开放”状态结构中的掩埋构象。 T / F100三聚体与bNAb的结合较弱,包括融合肽特异性bNAb PGT151和VRC34.01。 T / F100结构可能表示预融合状态,介于关闭状态和打开状态之间。这些观察结果与HIV-1传播和疫苗设计的机制有关。

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