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不同的逆转录病毒晚期出芽结构域通过使用替代衔接蛋白招募液泡蛋白分选因子。

Divergent retroviral late-budding domains recruit vacuolar protein sorting factors by using alternative adaptor proteins.

作者信息

Martin-Serrano Juan, Yarovoy Anton, Perez-Caballero David, Bieniasz Paul D

机构信息

Aaron Diamond AIDS Research Center, The Rockefeller University, New York, NY 10021, USA.

出版信息

Proc Natl Acad Sci U S A. 2003 Oct 14;100(21):12414-9. doi: 10.1073/pnas.2133846100. Epub 2003 Sep 30.

Abstract

The release of enveloped viruses from infected cells often requires a virally encoded activity, termed a late-budding domain (L domain), encoded by essential PTAP, PPXY, or YPDL sequence motifs. PTAP-type L domains recruit one of three endosomal sorting complexes required for transport (ESCRT-I). However, subsequent events in viral budding are poorly defined, and neither YPDL nor PPXY-type L domains require ESCRT-I. Here, we show that ESCRT-I and other class E vacuolar protein sorting (VPS) factors are linked by a complex series of protein-protein interactions. In particular, interactions between ESCRT-I and ESCRT-III are bridged by AIP-1/ALIX, a mammalian orthologue of the yeast class E VPS factor, Bro1. Expression of certain ESCRT-III components as fusion proteins induces a late budding defect that afflicts all three L-domain types, suggesting that ESCRT-III integrity is required in a general manner. Notably, the prototype YPDL-type L domain encoded by equine infectious anemia virus (EIAV) acts by recruiting AIP-1/ALIX and expression of a truncated form of AIP-1/ALIX or small interfering RNA-induced AIP-1/ALIX depletion specifically inhibits EIAV YPDL-type L-domain function. Overall, these findings indicate that L domains subvert a subset of class E VPS factors to mediate viral budding, some of which are required for each of the L-domain types, whereas others apparently act as adaptors to physically link specific L-domain types to the class E VPS machinery.

摘要

包膜病毒从受感染细胞中释放通常需要一种由病毒编码的活性,称为晚期出芽结构域(L结构域),由必需的PTAP、PPXY或YPDL序列基序编码。PTAP型L结构域招募三种运输所需的内体分选复合物之一(ESCRT-I)。然而,病毒出芽的后续事件定义不清,并且YPDL和PPXY型L结构域都不需要ESCRT-I。在此,我们表明ESCRT-I和其他E类液泡蛋白分选(VPS)因子通过一系列复杂的蛋白质-蛋白质相互作用相连。特别是,ESCRT-I和ESCRT-III之间的相互作用由AIP-1/ALIX桥接,AIP-1/ALIX是酵母E类VPS因子Bro1的哺乳动物同源物。某些ESCRT-III组分作为融合蛋白的表达诱导了影响所有三种L结构域类型的晚期出芽缺陷,这表明ESCRT-III的完整性是普遍需要的。值得注意的是,马传染性贫血病毒(EIAV)编码的原型YPDL型L结构域通过招募AIP-1/ALIX起作用,并且截短形式的AIP-1/ALIX的表达或小干扰RNA诱导的AIP-1/ALIX缺失特异性抑制EIAV YPDL型L结构域功能。总体而言,这些发现表明L结构域颠覆了一部分E类VPS因子来介导病毒出芽,其中一些是每种L结构域类型所必需的,而其他一些显然作为衔接子将特定的L结构域类型与E类VPS机制物理连接起来。

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