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组氨酸375调节HIV-1 CRF01_AE包膜糖蛋白中的CD4结合。

Histidine 375 Modulates CD4 Binding in HIV-1 CRF01_AE Envelope Glycoproteins.

作者信息

Zoubchenok Daria, Veillette Maxime, Prévost Jérémie, Sanders-Buell Eric, Wagh Kshitij, Korber Bette, Chenine Agnès L, Finzi Andrés

机构信息

Centre de Recherche du CHUM, Université de Montréal, Montreal, QC, Canada.

Department of Microbiology, Infection and Immunology, Université de Montréal, Montreal, QC, Canada.

出版信息

J Virol. 2017 Jan 31;91(4). doi: 10.1128/JVI.02151-16. Print 2017 Feb 15.

Abstract

UNLABELLED

The envelope glycoproteins (Envs) from human immunodeficiency virus type 1 (HIV-1) mediate viral entry. The binding of the HIV-1 gp120 glycoprotein to CD4 triggers conformational changes in gp120 that allow high-affinity binding to its coreceptors. In contrast to all other Envs from the same phylogenetic group, M, which possess a serine (S) at position 375, those from CRF01_AE strains possess a histidine (H) at this location. This residue is part of the Phe43 cavity, where residue 43 of CD4 (a phenylalanine) engages with gp120. Here we evaluated the functional consequences of replacing this residue in two CRF01_AE Envs (CM244 and 92TH023) by a serine. We observed that reversion of amino acid 375 to a serine (H375S) resulted in a loss of functionality of both CRF01_AE Envs as measured by a dramatic loss in infectivity and ability to mediate cell-to-cell fusion. While no effects on processing or trimer stability of these variants were observed, decreased functionality could be linked to a major defect in CD4 binding induced by the replacement of H375 by a serine. Importantly, mutations of residues 61 (layer 1), 105 and 108 (layer 2), and 474 to 476 (layer 3) of the CRF01_AE gp120 inner domain layers to the consensus residues present in group M restored CD4 binding and wild-type levels of infectivity and cell-to-cell fusion. These results suggest a functional coevolution between the Phe43 cavity and the gp120 inner domain layers. Altogether, our observations describe the functional importance of amino acid 375H in CRF01_AE envelopes.

IMPORTANCE

A highly conserved serine located at position 375 in group M is replaced by a histidine in CRF01_AE Envs. Here we show that H375 is required for efficient CRF01_AE Env binding to CD4. Moreover, this work suggests that specific residues of the gp120 inner domain layers have coevolved with H375 in order to maintain its ability to mediate viral entry.

摘要

未标记

1型人类免疫缺陷病毒(HIV-1)的包膜糖蛋白(Env)介导病毒进入。HIV-1 gp120糖蛋白与CD4的结合会触发gp120的构象变化,使其能够与共受体进行高亲和力结合。与同一系统发育组M中的所有其他Env不同,M组在375位具有丝氨酸(S),而CRF01_AE毒株的Env在该位置具有组氨酸(H)。该残基是Phe43腔的一部分,CD4的43位残基(苯丙氨酸)在此处与gp120结合。在此,我们评估了用丝氨酸取代两个CRF01_AE Env(CM244和92TH023)中的该残基的功能后果。我们观察到,将氨基酸375回复为丝氨酸(H375S)导致两种CRF01_AE Env的功能丧失,这通过感染力和介导细胞间融合能力的显著丧失来衡量。虽然未观察到对这些变体的加工或三聚体稳定性有影响,但功能降低可能与丝氨酸取代H375引起的CD4结合的主要缺陷有关。重要的是,将CRF01_AE gp120内域层的61位(第1层)、105和108位(第2层)以及474至476位(第3层)残基突变为M组中存在的共有残基可恢复CD4结合以及野生型水平的感染力和细胞间融合。这些结果表明Phe43腔与gp120内域层之间存在功能协同进化。总之,我们的观察结果描述了CRF01_AE包膜中氨基酸375H的功能重要性。

重要性

M组中位于375位的高度保守的丝氨酸在CRF01_AE Env中被组氨酸取代。在此我们表明,H375是CRF01_AE Env有效结合CD4所必需的。此外,这项工作表明,gp120内域层的特定残基与H375协同进化,以维持其介导病毒进入的能力。

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