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Cloning and Characterization of a Novel Hepatitis B Virus x Binding Protein That Inhibits Viral Replication

机译:新型的抑制病毒复制的乙型肝炎病毒x结合蛋白的克隆与鉴定

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摘要

The hepatitis B virus and the mammalian hepadnavirus genomes encode for a short open reading frame called x. Expression of the protein product (HBx) appears necessary for establishment of natural infection. However, in vitro studies have suggested a multifunctional role for HBx as an indirect transcriptional transactivator of a variety of different viral and cellular promoters. Indeed, HBx has no known direct DNA binding properties but may interact with transcription factors as well as activate intracellular signaling pathways associated with cell growth. To further address the possible functional role of HBx in the life cycle of hepatitis B virus, we performed an analysis using the yeast two-hybrid system to screen a cDNA library derived from a hepatocellular carcinoma cell line with a HBx fusion bait in an attempt to identify cellular partners that may bind to and alter the biologic properties of HBx. A HBx-interacting protein that specifically complexes with the carboxy terminus of wild-type HBx was identified and designated XIP. This 9.6-kDa protein is capable of binding to HBx in vitro, and transient and stable expression in hepatocellular carcinoma cells abolishes the transactivation properties of HBx on luciferase constructs driven by AP-1 and endogenous hepatitis B virus enhancer/promoter elements. Investigation of the role of XIP in hepatitis B virus replication in differentiated hepatocellular carcinoma cells revealed that XIP expression reduces wild-type hepatitis B virus replication to levels observed following transfection with an HBx-minus virus. In contrast, the replication levels of the duck hepatitis B virus, a hepadnavirus that lacks the x open reading frame, were unchanged in the context of XIP expression. We propose that one of the physiologic functions of the cellular protein XIP is to negatively regulate HBx activity and thus to alter the replication life cycle of the virus.
机译:乙型肝炎病毒和哺乳动物肝炎病毒基因组编码称为x的短开放阅读框。蛋白产物(HBx)的表达似乎是建立自然感染所必需的。但是,体外研究表明,HBx作为多种不同病毒和细胞启动子的间接转录反式激活因子具有多功能作用。实际上,HBx没有已知的直接DNA结合特性,但可能与转录因子相互作用并激活与细胞生长相关的细胞内信号传导途径。为了进一步解决HBx在乙型肝炎病毒生命周期中可能的功能作用,我们使用酵母双杂交系统进行了分析,以筛选具有HBx融合诱饵的肝细胞癌细胞株的cDNA文库,以尝试确定可能结合并改变HBx生物学特性的细胞伴侣。鉴定了与野生型HBx羧基末端特异性复合的HBx相互作用蛋白,并将其命名为XIP。该9.6 kDa蛋白能够在体外与HBx结合,并且在肝细胞癌细胞中的瞬时稳定表达消除了HBx在由AP-1和内源性乙型肝炎病毒增强剂/启动子元件驱动的萤光素酶构建体上的反式激活特性。 XIP在分化的肝癌细胞中乙型肝炎病毒复制中的作用的研究表明,XIP表达将野生型乙型肝炎病毒复制降低到用HBx负病毒转染后观察到的水平。相反,在XIP表达的背景下,鸭乙型肝炎病毒(一种缺乏x开放阅读框的肝炎病毒)的复制水平没有变化。我们建议细胞蛋白XIP的生理功能之一是负调节HBx活性,从而改变病毒的复制生命周期。

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