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保守的HIV-1间隔肽2触发基质晶格成熟。

The conserved HIV-1 spacer peptide 2 triggers matrix lattice maturation.

作者信息

Stacey James C V, Hrebík Dominik, Nand Elizabeth, Shetty Snehith Dyavari, Qu Kun, Boicu Marius, Anders-Össwein Maria, Dick Robert A, Mothes Walther, Kräusslich Hans-Georg, Müller Barbara, Briggs John A G

机构信息

Department of Cell and Virus Structure, Max Planck Institute of Biochemistry, 82152 Martinsried, Germany.

Structural Studies Division, MRC Laboratory of Molecular Biology, Cambridge CB2 0QU, United Kingdom.

出版信息

bioRxiv. 2024 Nov 6:2024.11.06.622200. doi: 10.1101/2024.11.06.622200.

Abstract

HIV-1 particles are released in an immature, non-infectious form. Proteolytic cleavage of the main structural polyprotein Gag into functional domains induces rearrangement into mature, infectious virions. In immature virus particles, the Gag membrane binding domain, MA, forms a hexameric protein lattice that undergoes structural transition upon cleavage into a distinct, mature MA lattice. The mechanism of MA lattice maturation is unknown. Here we show that released spacer peptide 2 (SP2), a conserved peptide of unknown function situated ~300 residues downstream of MA, binds MA to induce structural maturation. By high-resolution in-virus structure determination of MA, we show that MA does not bind lipid into a side pocket as previously thought, but instead binds SP2 as an integral part of the protein-protein interfaces that stabilise the mature lattice. Analysis of Gag cleavage site mutants showed that SP2 release is required for MA maturation, and we demonstrate that SP2 is sufficient to induce maturation of purified MA on lipid layers in vitro. SP2-triggered MA maturation correlated with faster fusion of virus with target cells. Our results reveal a new, unexpected interaction between two HIV-1 components, provide a high-resolution structure of mature MA, establish the trigger of MA structural maturation, and assign function to the SP2 peptide.

摘要

HIV-1病毒颗粒以未成熟、无感染性的形式释放。主要结构多聚蛋白Gag被蛋白水解切割成功能结构域,诱导其重排为成熟的、有感染性的病毒粒子。在未成熟的病毒颗粒中,Gag膜结合结构域MA形成六聚体蛋白晶格,在切割后会经历结构转变,形成独特的成熟MA晶格。MA晶格成熟的机制尚不清楚。在此,我们表明释放的间隔肽2(SP2),一种位于MA下游约300个残基处、功能未知的保守肽,与MA结合以诱导结构成熟。通过对MA进行高分辨率的病毒内结构测定,我们发现MA并非如先前认为的那样结合脂质进入侧口袋,而是将SP2作为稳定成熟晶格的蛋白质-蛋白质界面的一个组成部分进行结合。对Gag切割位点突变体的分析表明,MA成熟需要释放SP2,并且我们证明SP2足以在体外诱导脂质层上纯化的MA成熟。SP2触发的MA成熟与病毒与靶细胞更快的融合相关。我们的结果揭示了HIV-1两个组分之间一种新的、意想不到的相互作用,提供了成熟MA的高分辨率结构,确定了MA结构成熟的触发因素,并赋予了SP2肽功能。

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