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参与HIV-1限制因子BST2溶酶体分选的E3连接酶的特性分析

Characterization of E3 ligases involved in lysosomal sorting of the HIV-1 restriction factor BST2.

作者信息

Roy Nicolas, Pacini Grégory, Berlioz-Torrent Clarisse, Janvier Katy

机构信息

Inserm, U1016, Institut Cochin, Paris, France.

CNRS, UMR8104, Paris, France.

出版信息

J Cell Sci. 2017 May 1;130(9):1596-1611. doi: 10.1242/jcs.195412. Epub 2017 Mar 20.

Abstract

The cellular protein BST2 (also known as tetherin) acts as a major intrinsic antiviral protein that prevents the release of enveloped viruses by trapping nascent viral particles at the surface of infected cells. Viruses have evolved specific strategies to displace BST2 from viral budding sites in order to promote virus egress. In HIV-1, the accessory protein Vpu counters BST2 antiviral activity and promotes sorting of BST2 for lysosomal degradation. Vpu increases polyubiquitylation of BST2, a post-translation modification required for Vpu-induced BST2 downregulation, through recruitment of the E3 ligase complex SCF adaptors β-TrCP1 and β-TrCP2 (two isoforms encoded by and , respectively). Herein, we further investigate the role of the ubiquitylation machinery in the lysosomal sorting of BST2. Using a small siRNA screen, we highlighted two additional regulators of BST2 constitutive ubiquitylation and sorting to the lysosomes: the E3 ubiquitin ligases NEDD4 and MARCH8. Interestingly, Vpu does not hijack the cellular machinery that is constitutively involved in BST2 ubiquitylation to sort BST2 for degradation in the lysosomes but instead promotes the recognition of BST2 by β-TrCP proteins. Altogether, our results provide further understanding of the mechanisms underlying BST2 turnover in cells.

摘要

细胞蛋白BST2(也称为束缚素)作为一种主要的内在抗病毒蛋白,通过在受感染细胞表面捕获新生病毒颗粒来阻止包膜病毒的释放。病毒已经进化出特定策略,将BST2从病毒出芽位点置换出来,以促进病毒释放。在HIV-1中,辅助蛋白Vpu对抗BST2的抗病毒活性,并促进BST2被分选至溶酶体进行降解。Vpu通过招募E3连接酶复合物SCF接头蛋白β-TrCP1和β-TrCP2(分别由 和 编码的两种同工型)来增加BST2的多聚泛素化,这是Vpu诱导BST2下调所需的一种翻译后修饰。在此,我们进一步研究泛素化机制在BST2溶酶体分选中的作用。通过一个小干扰RNA筛选,我们发现了另外两个BST2组成型泛素化及分选至溶酶体的调节因子:E3泛素连接酶NEDD4和MARCH8。有趣的是,Vpu并非利用细胞中组成性参与BST2泛素化的机制来将BST2分选至溶酶体进行降解,而是促进β-TrCP蛋白对BST2的识别。总之,我们的结果进一步加深了对细胞中BST2周转机制的理解。

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