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乙型肝炎亚病毒包膜颗粒利用 COPII 机制通过选择性利用 Sec24A 和 Sec23B 进行细胞内运输。

Hepatitis B subviral envelope particles use the COPII machinery for intracellular transport via selective exploitation of Sec24A and Sec23B.

机构信息

Department of Virology, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.

Department of Molecular and Cellular Mechanisms of Neurodegeneration, Paul Flechsig Institute of Brain Research, University of Leipzig, Leipzig, Germany.

出版信息

Cell Microbiol. 2020 Jun;22(6):e13181. doi: 10.1111/cmi.13181. Epub 2020 Feb 15.

Abstract

Hepatitis B virus (HBV) is a leading cause of liver disease. Its success as a human pathogen is related to the immense production of subviral envelope particles (SVPs) contributing to viral persistence by interfering with immune functions. To explore cellular pathways involved in SVP formation and egress, we investigated host-pathogen interactions. Yeast-based proteomics revealed Sec24A, a component of the coat protein complex II (COPII), as an interaction partner of the HBV envelope S domain. To understand how HBV co-opts COPII as a proviral machinery, we studied roles of key Sec proteins in HBV-expressing liver cells. Silencing of Sar1, Sec23, and Sec24, which promote COPII assembly concomitant with cargo loading, strongly diminished endoplasmic reticulum (ER) envelope export and SVP secretion. By analysing Sec paralog specificities, we unexpectedly found that the HBV envelope is a selective interaction partner of Sec24A and Sec23B whose functions could not be substituted by their related isoforms. In support, we found that HBV replication upregulated Sec24A and Sec23B transcription. Furthermore, HBV encountered the Sec24A/Sec23B complex via an interaction that involved the N-terminal half of Sec24A and a di-arginine motif of its S domain, mirroring a novel ER export code. Accordingly, an interference with the COPII/HBV cross-talk might display a tool to effectively inhibit SVP release.

摘要

乙型肝炎病毒 (HBV) 是导致肝脏疾病的主要原因之一。它之所以能成为人类病原体,与其大量产生亚病毒包膜颗粒 (SVPs) 有关,这些颗粒通过干扰免疫功能而有助于病毒持续存在。为了探索参与 SVP 形成和出芽的细胞途径,我们研究了宿主-病原体相互作用。酵母蛋白质组学揭示 Sec24A 是衣壳蛋白复合物 II (COPII) 的一个组成部分,是 HBV 包膜 S 结构域的一个相互作用伙伴。为了了解 HBV 如何将 COPII 作为前病毒机制进行共利用,我们研究了关键 Sec 蛋白在表达 HBV 的肝细胞中的作用。沉默促进 COPII 组装和货物装载的 Sar1、Sec23 和 Sec24,强烈抑制内质网 (ER) 包膜输出和 SVP 分泌。通过分析 Sec 同源物的特异性,我们出人意料地发现 HBV 包膜是 Sec24A 和 Sec23B 的选择性相互作用伙伴,其功能不能被它们的相关同工型替代。支持这一观点的是,我们发现 HBV 复制上调了 Sec24A 和 Sec23B 的转录。此外,HBV 通过涉及 Sec24A 的 N 端半部分和其 S 结构域的二精氨酸基序的相互作用来遇到 Sec24A/Sec23B 复合物,反映了一种新的 ER 输出密码。因此,干扰 COPII/ HBV 相互作用可能显示出一种有效抑制 SVP 释放的工具。

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