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人类VPS37C的鉴定,VPS37C是运输所需内体分选复合体-I的一个组成部分,对病毒出芽很重要。

Identification of human VPS37C, a component of endosomal sorting complex required for transport-I important for viral budding.

作者信息

Eastman Scott W, Martin-Serrano Juan, Chung Wayne, Zang Trinity, Bieniasz Paul D

机构信息

Aaron Diamond AIDS Research Center and the Rockefeller University, New York, New York 10016, USA.

出版信息

J Biol Chem. 2005 Jan 7;280(1):628-36. doi: 10.1074/jbc.M410384200. Epub 2004 Oct 27.

Abstract

Endosomal sorting complex required for transport-I (ESCRT-I) is one of three defined protein complexes in the class E vacuolar protein sorting (VPS) pathway required for the sorting of ubiquitinated transmembrane proteins into internal vesicles of multivesicular bodies. In yeast, ESCRT-I is composed of three proteins, VSP23, VPS28, and VPS37, whereas in mammals only Tsg101(VPS23) and VPS28 were originally identified as ESCRT-I components. Using yeast two-hybrid screens, we identified one of a family of human proteins (VPS37C) as a Tsg101-binding protein. VPS37C can form a ternary complex with Tsg101 and VPS28 by binding to a domain situated toward the carboxyl terminus of Tsg101 and binds to another class E VPS factor, namely Hrs. In addition, VPS37C is recruited to aberrant endosomes induced by overexpression of Tsg101, Hrs, or dominant negative form of the class E VPS ATPase, VPS4. Enveloped viruses that encode PTAP motifs to facilitate budding exploit ESCRT-I as an interface with the class E VPS pathway, and accordingly, VPS37C is recruited to the plasma membrane along with Tsg101 by human immunodeficiency virus, type 1 (HIV-1) Gag. Moreover, direct fusion of VPS37C to HIV-1 Gag obviates the requirement for a PTAP motif to induce virion release. Depletion of VPS37C from cells does not inhibit murine leukemia virus budding, which is not mediated by ESCRT-I, however, if murine leukemia virus budding is engineered to be ESCRT-I-dependent, then it is inhibited by VPS37C depletion, and this inhibition is accentuated if VPS37B is simultaneously depleted. Thus, this study identifies VPS37C as a functional component of mammalian ESCRT-I.

摘要

转运所需的内体分选复合体-I(ESCRT-I)是E类液泡蛋白分选(VPS)途径中三个确定的蛋白复合体之一,该途径用于将泛素化的跨膜蛋白分选到多泡体的内部囊泡中。在酵母中,ESCRT-I由三种蛋白VSP23、VPS28和VPS37组成,而在哺乳动物中,最初仅鉴定出Tsg101(VPS23)和VPS28为ESCRT-I组分。利用酵母双杂交筛选,我们鉴定出人类蛋白家族中的一个成员(VPS37C)为Tsg101结合蛋白。VPS37C可通过结合Tsg101羧基末端的一个结构域与Tsg101和VPS28形成三元复合体,并与另一类E VPS因子Hrs结合。此外,VPS37C被招募到由Tsg101、Hrs或E类VPS ATP酶VPS4的显性负性形式过表达诱导产生的异常内体中。编码PTAP基序以促进出芽的包膜病毒利用ESCRT-I作为与E类VPS途径的接口,因此,人类免疫缺陷病毒1型(HIV-1)的Gag可将VPS37C与Tsg101一起招募到质膜。此外,VPS37C与HIV-1 Gag的直接融合消除了诱导病毒体释放对PTAP基序的需求。从细胞中去除VPS37C并不抑制鼠白血病病毒出芽,因为鼠白血病病毒出芽不是由ESCRT-I介导的,然而,如果将鼠白血病病毒出芽设计为依赖ESCRT-I,那么它会受到VPS37C缺失的抑制,如果同时去除VPS37B,这种抑制会更加明显。因此,本研究将VPS37C鉴定为哺乳动物ESCRT-I的一个功能组分。

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