首页> 美国卫生研究院文献>Journal of Virology >Direct interaction of the hepatitis B virus HBx protein with p53 leads to inhibition by HBx of p53 response element-directed transactivation.
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Direct interaction of the hepatitis B virus HBx protein with p53 leads to inhibition by HBx of p53 response element-directed transactivation.

机译:乙型肝炎病毒HBx蛋白与p53的直接相互作用导致HBx抑制p53反应元件指导的反式激活。

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摘要

Hepatitis B virus is a major risk factor in human hepatocellular carcinomas. We have used protein affinity chromatography to show that the 17-kDa hepatitis B virus gene product, HBx, binds directly to the human tumor suppressor gene product, p53. Interaction of HBx with p53 did not prevent p53 from specifically binding DNA. Instead, HBx enhanced p53's oligomerization state on a DNA oligonucleotide containing a p53 response element. Optimal binding of HBx to p53 required intact p53, but weaker binding to both the N-terminal activation domain of p53 and a protein fragment containing the C-terminal DNA-binding and oligomerization domains of p53 was observed. In transient transfection experiments with human Calu-6 cells, HBx inhibited transactivation by p53 of a reporter gene containing a p53 response element. Also, HBx inhibited p53-stimulated transcription in vitro even when added to the reaction mixture after the formation of the preinitiation complex. Interaction of HBx with p53 did not prevent the activation domain of p53 from binding two general initiation factors, the TATA-box binding protein subunit of TFIID and the p62 subunit of TFIIH. To explain these results, we propose that localization of HBx to a promoter by interaction with DNA-bound p53 enables a repression domain in HBx to directly contact the basal transcription machinery and thereby repress transcription.
机译:乙型肝炎病毒是人类肝细胞癌的主要危险因素。我们已经使用蛋白质亲和层析来显示17-kDa乙型肝炎病毒基因产物HBx直接与人类肿瘤抑制基因产物p53结合。 HBx与p53的相互作用不会阻止p53特异性结合DNA。相反,HBx在含有p53反应元件的DNA寡核苷酸上增强了p53的寡聚状态。 HBx与p53的最佳结合需要完整的p53,但观察到与p53的N末端激活域和包含p53的C末端DNA结合和寡聚域的蛋白片段的结合较弱。在使用人类Calu-6细胞进行的瞬时转染实验中,HBx抑制了包含p53反应元件的报道基因的p53反式激活。同样,即使在预引发复合物形成后添加到反应混合物中,HBx也会在体外抑制p53刺激的转录。 HBx与p53的相互作用不会阻止p53的激活域结合两个通用的起始因子,即TFIID的TATA-box结合蛋白亚基和TFIIH的p62亚基。为了解释这些结果,我们建议通过与DNA结合的p53相互作用将HBx定位于启动子,从而使HBx中的阻遏域直接接触基础转录机制,从而抑制转录。

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