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Human Herpesvirus 8 Interferon Regulatory Factor-Mediated BH3-Only Protein Inhibition via Bid BH3-B Mimicry

机译:人类疱疹病毒8干扰素调节因子介导的BH3-仅通过投标BH3-B模仿蛋白抑制。

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摘要

Viral replication efficiency is in large part governed by the ability of viruses to counteract pro-apoptotic signals induced by infection of host cells. For HHV-8, viral interferon regulatory factor-1 (vIRF-1) contributes to this process in part via inhibitory interactions with BH3-only protein (BOP) Bim, recently identified as an interaction partner of vIRF-1. Here we recognize that the Bim-binding domain (BBD) of vIRF-1 resembles a region (BH3-B) of Bid, another BOP, which interacts intramolecularly with the functional BH3 domain of Bid to inhibit it pro-apoptotic activity. Indeed, vIRF-1 was found to target Bid in addition to Bim and to interact, via its BBD region, with the BH3 domain of each. In functional assays, BBD could substitute for BH3-B in the context of Bid, to suppress Bid-induced apoptosis in a BH3-binding-dependent manner, and vIRF-1 was able to protect transfected cells from apoptosis induced by Bid. While vIRF-1 can mediate nuclear sequestration of Bim, this was not the case for Bid, and inhibition of Bid and Bim by vIRF-1 could occur independently of nuclear localization of the viral protein. Consistent with this finding, direct BBD-dependent inactivation by vIRF-1 of Bid-induced mitochondrial permeabilization was demonstrable in vitro and isolated BBD sequences were also active in this assay. In addition to Bim and Bid BH3 domains, BH3s of BOPs Bik, Bmf, Hrk, and Noxa also were found to bind BBD, while those of both pro- and anti-apoptotic multi-BH domain Bcl-2 proteins were not. Finally, the significance of Bid to virus replication was demonstrated via Bid-depletion in HHV-8 infected cells, which enhanced virus production. Together, our data demonstrate and characterize BH3 targeting and associated inhibition of BOP pro-apoptotic activity by vIRF-1 via Bid BH3-B mimicry, identifying a novel mechanism of viral evasion from host cell defenses.
机译:病毒复制效率在很大程度上取决于病毒抵抗宿主细胞感染诱导的促凋亡信号的能力。对于HHV-8,病毒干扰素调节因子1(vIRF-1)部分地通过与仅BH3蛋白(BOP)Bim的抑制性相互作用而参与了这一过程,Bim最近被确定为vIRF-1的相互作用伴侣。在这里,我们认识到vIRF-1的Bim结合域(BBD)类似于另一个BOP Bid的区域(BH3-B),该分子与Bid的功能性BH3域发生分子内相互作用以抑制其促凋亡活性。实际上,发现vIRF-1除Bim外还靶向Bid,并通过其BBD区与每个BH3结构域相互作用。在功能测定中,BBD可以在Bid的背景下替代BH3-B,以Bid结合依赖性方式抑制Bid诱导的凋亡,而vIRF-1能够保护转染的细胞免受Bid诱导的凋亡。尽管vIRF-1可以介导Bim的核隔离,但Bid并非如此,而vIRF-1对Bid和Bim的抑制可能独立于病毒蛋白的核定位而发生。与此发现一致,在体外可证明由vIRF-1直接诱导BBD引起的Bid诱导的线粒体通透性失活,并且分离的BBD序列在该测定中也具有活性。除了Bim和Bid BH3结构域外,还发现BOP Bik,Bmf,Hrk和Noxa的BH3与BBD结合,而前和抗凋亡多BH结构域Bcl-2蛋白均不结合。最后,通过在HHV-8感染的细胞中进行竞价枯竭来证明竞价对病毒复制的重要性,这可以提高病毒的产生。在一起,我们的数据证明和表征BIR3通过BIR3-Bid模仿通过vIRF-1对BH3靶向和相关的BOP促凋亡活性抑制作用,确定了从宿主细胞防御中逃逸病毒的新机制。

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