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鉴定泡沫病毒原型出芽过程中gag蛋白的重要结构域。

Identification of domains in gag important for prototypic foamy virus egress.

作者信息

Patton Gillian S, Morris Stephen A, Chung Wayne, Bieniasz Paul D, McClure Myra O

机构信息

Jefferiss Research Trust Laboratories, Wright-Fleming Institute, Division of Medicine, Imperial College London, St Mary's Campus, Norfolk Place, London W2 1PG, United Kingdom.

出版信息

J Virol. 2005 May;79(10):6392-9. doi: 10.1128/JVI.79.10.6392-6399.2005.

Abstract

Sequence motifs (L domains) have been described in viral structural proteins. Mutations in these lead to a defect at a late stage in virus assembly and budding. For several viruses, recruitment of an endosomal sorting complexes required for transport 1 subunit (Tsg101), a component of the class E vacuolar protein sorting (EVPS) machinery, is a prerequisite for virion budding. To effect this, Tsg101 interacts with the PT/SAP L domain. We have identified candidate L-domain motifs, PSAP, PPPI, and YEIL, in the prototypic foamy virus (PFV) Gag protein, based on their homology to known viral L domains. Mutation of the PSAP and PPPI motifs individually reduced PFV egress, and their combined mutation had an additive effect. When PSAP was mutated, residual infectious PFV release was unaffected by dominant negative Vps4 (an ATPase involved in the final stages of budding), and sensitivity to dominant negative Tsg101 was dramatically reduced, suggesting that the PSAP motif functions as a conventional class E VPS-dependent L domain. Consistent with this notion, yeast two-hybrid analysis showed a PSAP motif-dependent interaction between PFV Gag and Tsg101. Surprisingly, PFV release which is dependent on the PPPI motif was Vps4-independent and was partially inhibited by dominant negative Tsg101, suggesting that PPPI functions by an unconventional mechanism to facilitate PFV egress. Mutation of the YEIL sequence completely abolished particle formation and also reduced the rate of Gag processing by the viral protease, suggesting that the integrity of YEIL is required at an assembly step prior to budding and YEIL is not acting as an L domain.

摘要

序列基序(L结构域)已在病毒结构蛋白中被描述。这些基序中的突变会导致病毒组装和出芽后期出现缺陷。对于几种病毒而言,招募转运所需的内体分选复合物1亚基(Tsg101),即E类液泡蛋白分选(EVPS)机制的一个组成部分,是病毒粒子出芽的先决条件。为实现这一点,Tsg101与PT/SAP L结构域相互作用。基于与已知病毒L结构域的同源性,我们在原型泡沫病毒(PFV)Gag蛋白中鉴定出候选L结构域基序PSAP、PPPI和YEIL。单独突变PSAP和PPPI基序会降低PFV的释放,且它们的联合突变具有累加效应。当PSAP发生突变时,残留的感染性PFV释放不受显性负性Vps4(一种参与出芽最后阶段的ATP酶)的影响,并且对显性负性Tsg101的敏感性显著降低,这表明PSAP基序作为一种传统的依赖E类VPS的L结构域发挥作用。与此观点一致,酵母双杂交分析显示PFV Gag与Tsg101之间存在依赖PSAP基序的相互作用。令人惊讶的是,依赖PPPI基序的PFV释放不依赖Vps4,且部分受到显性负性Tsg101的抑制,这表明PPPI通过一种非常规机制促进PFV释放。YEIL序列的突变完全消除了颗粒形成,还降低了病毒蛋白酶对Gag的加工速率,这表明在出芽前的组装步骤需要YEIL的完整性,且YEIL并非作为一个L结构域发挥作用。

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