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非洲猪瘟病毒A179L与自噬调节因子Beclin的晶体结构

Crystal Structure of African Swine Fever Virus A179L with the Autophagy Regulator Beclin.

作者信息

Banjara Suresh, Shimmon Gareth L, Dixon Linda K, Netherton Christopher L, Hinds Mark G, Kvansakul Marc

机构信息

Department of Biochemistry & Genetics, La Trobe Institute for Molecular Science, La Trobe University, Melbourne, Victoria 3086, Australia.

Pirbright Institute, Ash Road, Pirbright, Surrey GU24 0NF, UK.

出版信息

Viruses. 2019 Aug 27;11(9):789. doi: 10.3390/v11090789.

Abstract

Subversion of programmed cell death-based host defence systems is a prominent feature of infections by large DNA viruses. African swine fever virus (ASFV) is a large DNA virus and sole member of the family that harbours the B-cell lymphoma 2 or Bcl-2 homolog A179L. A179L has been shown to bind to a range of cell death-inducing host proteins, including pro-apoptotic Bcl-2 proteins as well as the autophagy regulator Beclin. Here we report the crystal structure of A179L bound to the Beclin BH3 motif. A179L engages Beclin using the same canonical ligand-binding groove that is utilized to bind to pro-apoptotic Bcl-2 proteins. The mode of binding of Beclin to A179L mirrors that of Beclin binding to human Bcl-2 and Bcl-x as well as murine γ-herpesvirus 68. The introduction of bulky hydrophobic residues into the A179L ligand-binding groove via site-directed mutagenesis ablates binding of Beclin to A179L, leading to a loss of the ability of A179L to modulate autophagosome formation in Vero cells during starvation. Our findings provide a mechanistic understanding for the potent autophagy inhibitory activity of A179L and serve as a platform for more detailed investigations into the role of autophagy during ASFV infection.

摘要

基于程序性细胞死亡的宿主防御系统的颠覆是大型DNA病毒感染的一个显著特征。非洲猪瘟病毒(ASFV)是一种大型DNA病毒,也是携带B细胞淋巴瘤2或Bcl-2同源物A179L的病毒家族的唯一成员。已证明A179L可与一系列诱导细胞死亡的宿主蛋白结合,包括促凋亡Bcl-2蛋白以及自噬调节蛋白Beclin。在此,我们报告了与Beclin BH3基序结合的A179L的晶体结构。A179L利用与结合促凋亡Bcl-2蛋白相同的典型配体结合凹槽与Beclin结合。Beclin与A179L的结合模式反映了Beclin与人Bcl-2和Bcl-x以及鼠γ-疱疹病毒68的结合模式。通过定点诱变在A179L配体结合凹槽中引入大的疏水残基,消除了Beclin与A179L的结合,导致A179L在饥饿期间调节Vero细胞中自噬体形成的能力丧失。我们的研究结果为A179L强大的自噬抑制活性提供了机制上的理解,并为更详细地研究自噬在ASFV感染中的作用提供了一个平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a61b/6784060/738e63707c4e/viruses-11-00789-g001.jpg

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