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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Mutations in the feline immunodeficiency virus envelope glycoprotein confer resistance to a dominant-negative fragment of Tsg101 by enhancing infectivity and cell-to-cell virus transmission.
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Mutations in the feline immunodeficiency virus envelope glycoprotein confer resistance to a dominant-negative fragment of Tsg101 by enhancing infectivity and cell-to-cell virus transmission.

机译:猫免疫缺陷病毒包膜糖蛋白中的突变通过增强感染性和细胞间病毒传播,赋予了对Tsg101显性阴性片段的抗性。

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The Pro-Ser-Ala-Pro (PSAP) motif in the p2 domain of feline immunodeficiency virus (FIV) Gag is required for efficient virus release, virus replication, and Gag binding to the ubiquitin-E2-variant (UEV) domain of Tsg101. As a result of this direct interaction, expression of an N-terminal fragment of Tsg101 containing the UEV domain (referred to as TSG-5') inhibits FIV release. In these respects, the FIV p2(Gag) PSAP motif is analogous to the PTAP motif of HIV-1 p6(Gag). To evaluate the feasibility of a late domain-targeted inhibition of virus replication, we created an enriched Crandell-Rees feline kidney (CRFK) cell line (T5'(hi)) that stably expresses high levels of TSG-5'. Here we show that mutations in either the V3 loop or the second heptad repeat (HR2) domain of the FIV envelope glycoprotein (Env) rescue FIV replication in T5'(hi) cells without increasing FIV release efficiency. TSG-5'-resistance mutations in Env enhance virion infectivity and the cell-cell spread of FIV when diffusion is limited using a semi-solid growth medium. These findings show that mutations in functional domains of Env confer TSG-5'-resistance, which we propose enhances specific infectivity and the cell-cell transmission of virus to counteract inefficient virus release. This article is part of a Special Issue entitled: Viral Membrane Proteins-Channels for Cellular Networking.
机译:猫免疫缺陷病毒(FIV)Gag p2域中的Pro-Ser-Ala-Pro(PSAP)基序对于有效的病毒释放,病毒复制以及Gag与Tsg101的泛素E2变异(UEV)域的结合是必需的。这种直接相互作用的结果是,包含UEV域(称为TSG-5')的Tsg101的N末端片段的表达抑制了FIV的释放。在这些方面,FIV p2(Gag)PSAP基序类似于HIV-1 p6(Gag)的PTAP基序。为了评估对病毒复制进行后期域靶向抑制的可行性,我们创建了稳定表达高水平TSG-5'的富Crandell-Rees猫肾(CRFK)细胞系(T5'(hi))。在这里,我们显示FIV包膜糖蛋白(Env)的V3环或第二个七肽重复(HR2)域中的突变可在T5'(hi)细胞中抢救FIV复制而不增加FIV释放效率。当使用半固体生长培养基限制扩散时,Env中的TSG-5'抗性突变会增强病毒体感染性和FIV的细胞扩散。这些发现表明,Env的功能域中的突变赋予TSG-5'抗性,我们提出这可以增强特异性感染性和病毒的细胞间传播以抵消无效的病毒释放。本文是名为“病毒膜蛋白通道的细胞网络”的特刊的一部分。

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