Structural basis of Deerpox virus-mediated inhibition of apoptosis.

Denis R Burton, Sofia Caria, Bevan Marshall, Michele Barry, Marc Kvansakul
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引用次数: 24

Abstract

Apoptosis is a key innate defence mechanism to eliminate virally infected cells. To counteract premature host-cell apoptosis, poxviruses have evolved numerous molecular strategies, including the use of Bcl-2 proteins, to ensure their own survival. Here, it is reported that the Deerpox virus inhibitor of apoptosis, DPV022, only engages a highly restricted set of death-inducing Bcl-2 proteins, including Bim, Bax and Bak, with modest affinities. Structural analysis reveals that DPV022 adopts a Bcl-2 fold with a dimeric domain-swapped topology and binds pro-death Bcl-2 proteins via two conserved ligand-binding grooves found on opposite sides of the dimer. Structures of DPV022 bound to Bim, Bak and Bax BH3 domains reveal that a partial obstruction of the binding groove is likely to be responsible for the modest affinities of DPV022 for BH3 domains. These findings reveal that domain-swapped dimeric Bcl-2 folds are not unusual and may be found more widely in viruses. Furthermore, the modest affinities of DPV022 for pro-death Bcl-2 proteins suggest that two distinct classes of anti-apoptotic viral Bcl-2 proteins exist: those that are monomeric and tightly bind a range of death-inducing Bcl-2 proteins, and others such as DPV022 that are dimeric and only bind a very limited number of death-inducing Bcl-2 proteins with modest affinities.

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鹿痘病毒介导的细胞凋亡抑制的结构基础。
细胞凋亡是消灭病毒感染细胞的一种关键的先天防御机制。为了对抗宿主细胞的过早凋亡,痘病毒进化出了许多分子策略,包括使用Bcl-2蛋白,以确保它们自己的存活。本研究报道,鹿痘病毒细胞凋亡抑制剂DPV022仅与一组高度受限的诱导死亡的Bcl-2蛋白结合,包括Bim、Bax和Bak,并具有适度的亲和力。结构分析表明,DPV022采用具有二聚体结构域交换拓扑结构的Bcl-2折叠,并通过在二聚体两侧发现的两个保守的配体结合凹槽结合亲死亡Bcl-2蛋白。DPV022与BH3结构域Bim、Bak和Bax结合的结构表明,结合槽的部分阻塞可能是DPV022与BH3结构域具有适度亲和力的原因。这些发现表明,区域交换二聚体Bcl-2折叠并不罕见,可能在病毒中更广泛地发现。此外,DPV022对促死亡Bcl-2蛋白的适度亲和力表明,存在两类不同的抗凋亡病毒Bcl-2蛋白:一类是单体的,紧密结合一系列致死亡Bcl-2蛋白;另一类是二聚体的,仅结合非常有限数量的致死亡Bcl-2蛋白,具有适度亲和力。
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