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Structural and Functional Insight into Canarypox Virus CNP058 Mediated Regulation of Apoptosis

机译:金丝雀痘病毒CNP058介导的细胞凋亡调控的结构和功能性见解

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摘要

Programmed cell death or apoptosis is an important component of host defense systems against viral infection. The B-cell lymphoma 2 (Bcl-2) proteins family is the main arbiter of mitochondrially mediated apoptosis, and viruses have evolved sequence and structural mimics of Bcl-2 to subvert premature host cell apoptosis in response to viral infection. The sequencing of the canarypox virus genome identified a putative pro-survival Bcl-2 protein, CNP058. However, a role in apoptosis inhibition for CNP058 has not been identified to date. Here, we report that CNP058 is able to bind several host cell pro-death Bcl-2 proteins, including Bak and Bax, as well as several BH3 only-proteins including Bim, Bid, Bmf, Noxa, Puma, and Hrk with high to moderate affinities. We then defined the structural basis for CNP058 binding to pro-death Bcl-2 proteins by determining the crystal structure of CNP058 bound to Bim BH3. CNP058 adopts the conserved Bcl-2 like fold observed in cellular pro-survival Bcl-2 proteins, and utilizes the canonical ligand binding groove to bind Bim BH3. We then demonstrate that CNP058 is a potent inhibitor of ultraviolet (UV) induced apoptosis in a cell culture model. Our findings suggest that CNP058 is a potent inhibitor of apoptosis that is able to bind to BH3 domain peptides from a broad range of pro-death Bcl-2 proteins, and may play a key role in countering premature host apoptosis.
机译:程序性细胞死亡或凋亡是宿主防御病毒感染的防御系统的重要组成部分。 B细胞淋巴瘤2(Bcl-2)蛋白家族是线粒体介导的凋亡的主要仲裁者,并且病毒已经进化出Bcl-2的序列和结构模拟物来破坏病毒感染引起的宿主细胞过早凋亡。金丝雀痘病毒基因组的测序鉴定了一种推定的生存前Bcl-2蛋白CNP058。然而,迄今为止,尚未发现CNP058在凋亡抑制中的作用。在这里,我们报道CNP058能够结合几种宿主细胞死亡前Bcl-2蛋白,包括Bak和Bax,以及几种BH3 only蛋白,包括Bim,Bid,Bmf,Noxa,Puma和Hrk,中等亲和力。然后,我们通过确定与Bim BH3结合的CNP058的晶体结构,定义了CNP058与促死Bcl-2蛋白结合的结构基础。 CNP058采用在细胞存活前Bcl-2蛋白中观察到的保守的Bcl-2样折叠,并利用规范的配体结合槽结合Bim BH3。然后,我们证明CNP058是细胞培养模型中紫外线(UV)诱导的凋亡的有效抑制剂。我们的发现表明,CNP058是一种有效的凋亡抑制剂,能够与来自广泛的死亡前Bcl-2蛋白的BH3域肽结合,并且可能在抵抗宿主过早凋亡中起关键作用。

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