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首页> 外文期刊>Archives of virology >Processing, fusogenicity, virion incorporation and CXCR4-binding activity of a feline immunodeficiency virus envelope glycoprotein lacking the two conserved N-glycosylation sites at the C-terminus of the V3 domain
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Processing, fusogenicity, virion incorporation and CXCR4-binding activity of a feline immunodeficiency virus envelope glycoprotein lacking the two conserved N-glycosylation sites at the C-terminus of the V3 domain

机译:猫免疫缺陷病毒包膜糖蛋白的加工,融合,病毒体掺入和CXCR4结合活性在V3域的C末端缺少两个保守的N-糖基化位点

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The process of feline immunodeficiency virus (FIV) entry into its target cells is initiated by the association of the surface (SU) subunit of the viral envelope glycoprotein (Env) with the cellular receptors CD134 and CXCR4. This event is followed by the fusion of the viral and cellular membranes, which is mediated by the transmembrane (TM) subunit of Env. We and others have previously demonstrated that the V3 domain of the SU subunit of Env is essential for CXCR4 binding. Of note, there are two contiguous and highly conserved potential N-glycosylation sites ((NST420)-N-418 and (NLT424)-N-422) located at the C-terminal side of the V3 domain. We therefore decided to study the relevance for Env functions of these N-glycosylation motifs and found that disruption of both of them by introducing the N418Q/N422Q double amino acid substitution drastically impairs Env processing into the SU and TM subunits. Moreover, the simultaneous mutation of these N-glycosylation sites prevents Env incorporation into virions and Env-mediated cell-to-cell fusion. Notably, a recombinant soluble version of the SU glycoprotein carrying the double amino acid replacement N418Q/N422Q at the V3 C-terminal side binds to CXCR4 with an efficiency similar to that of wild-type SU.
机译:猫免疫缺陷病毒(FIV)进入其靶细胞的过程是通过病毒包膜糖蛋白(Env)的表面(SU)亚基与细胞受体CD134和CXCR4缔合而启动的。该事件之后是病毒膜和细胞膜的融合,这是由Env的跨膜(TM)亚基介导的。我们和其他人先前已证明Env的SU亚基的V3结构域对于CXCR4结合至关重要。值得注意的是,在V3域的C端侧有两个连续且高度保守的潜在N-糖基化位点((NST420)-N-418和(NLT424)-N-422)。因此,我们决定研究这些N-糖基化基序与Env功能的相关性,并发现通过引入N418Q / N422Q双氨基酸取代而破坏两者都严重损害了SU和TM亚基中的Env加工。此外,这些N-糖基化位点的同时突变会阻止Env掺入病毒粒子和Env介导的细胞间融合。值得注意的是,SU糖蛋白的重组可溶形式在V3 C端带有双氨基酸替代N418Q / N422Q,以与野生型SU相似的效率与CXCR4结合。

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