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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The soluble ectodomain of herpes simplex virus gD contains a membrane-proximal pro-fusion domain and suffices to mediate virus entry.
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The soluble ectodomain of herpes simplex virus gD contains a membrane-proximal pro-fusion domain and suffices to mediate virus entry.

机译:单纯疱疹病毒gD的可溶性胞外域包含膜近端的融合前域,足以介导病毒进入。

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Entry of herpes simplex virus (HSV) 1 into cells requires the interaction of HSV gD with herpesvirus entry mediator or nectin1 receptors, and fusion with cell membrane mediated by the fusion glycoproteins gB, gH, and gL. We report that the gD ectodomain in soluble form (amino acids 1-305) was sufficient to rescue the infectivity of a gD-null HSV mutant, indicating that gD does not need to be anchored to the virion envelope to mediate entry. Entry mediated by soluble gD required, in addition to the receptor-binding sites contained within residues 1-250, a discrete downstream portion (amino acids 261-305), located proximal to the transmembrane segment in full-length gD. We named it as profusion domain. The pro-fusion domain was required for entry mediated by virion-bound gD, because its substitution with the corresponding region of CD8 failed to complement the infectivity of gD(-/+) HSV. Furthermore, a receptor-negative gD (gD(Delta6-259)) inhibited virus infectivity when coexpressed with wild-type gD; i.e., it acted as a dominant-negative gD mutant. The pro-fusion domain is proline-rich, which is characteristic of regions involved in protein-protein interactions. P291L-P292A substitutions diminished the gD capacity to complement gD(-/+) HSV infectivity. We propose that gD forms a tripartite complex with its receptor and, by way of the proline-rich pro-fusion domain, with the fusion glycoproteins, or with one of them. The tripartite complex would serve to recruit/activate the fusion glycoproteins and bring them from a fusion-inactive to a fusion-active state, such that they execute fusion of the virion envelope with cell membrane.
机译:单纯疱疹病毒(HSV)1进入细胞需要HSV gD与疱疹病毒进入介体或nectin1受体相互作用,并与融合糖蛋白gB,gH和gL介导的细胞膜融合。我们报告说,可溶性形式的gD胞外域(氨基酸1-305)足以挽救gD无HSV突变体的传染性,表明gD不需要锚定在病毒体包膜上来介导进入。除了在残基1-250中所含的受体结合位点外,由可溶性gD介导的进入还需要一个离散的下游部分(氨基酸261-305),位于全长gD中跨膜片段的近端。我们将其命名为大量域。前融合域是由病毒体结合的gD介导的进入所必需的,因为它被CD8的相应区域取代无法补充gD(-/ +)HSV的感染性。此外,当与野生型gD共表达时,受体阴性gD(gD(Delta6-259))抑制了病毒的感染性。即,它充当显性阴性gD突变体。前融合结构域富含脯氨酸,这是参与蛋白质-蛋白质相互作用的区域的特征。 P291L-P292A取代减少了gD补充gD(-/ +)HSV感染力的能力。我们提出,gD与它的受体以及通过富含脯氨酸的前融合域,与融合糖蛋白或其中之一形成三联体复合物。三方复合物将用于募集/激活融合糖蛋白,并使它们从无融合状态转变为具有融合活性状态,从而使它们执行病毒粒子包膜与细胞膜的融合。

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