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突变型乙型肝炎 X 蛋白与抑癌蛋白 p53 的相互作用影响转录和细胞存活。

Interaction of mutant hepatitis B X protein with p53 tumor suppressor protein affects both transcription and cell survival.

机构信息

Department of Environmental Health Sciences, Johns Hopkins Bloomberg School of Public Health, Baltimore, Maryland 21205, USA.

出版信息

Mol Carcinog. 2011 Dec;50(12):972-80. doi: 10.1002/mc.20767. Epub 2011 Mar 22.

Abstract

This study examines the differential activities between wild-type Hepatitis B virus X protein (WtHBx) and a mutant HBx (MutHBx), which bears a hotspot mutation at nucleotides 1,762 and 1,764, resulting in a lysine to methionine change at codon 130 and a valine to isoleucine change at codon 131. This mutation leads to hepatocellular carcinoma, and we evaluated how WtHBx and MutHBx proteins differ in their interactions with the p53 tumor suppressor protein. This was experimentally addressed through co-immunoprecipitation assays examining the interaction between WtHBx and MutHBx proteins with p53, reporter assays determining the impact of the HBx proteins on p53-mediated gene transcription, and clonogenic survival assays evaluating the effect of HBx on cell growth in lines of varying p53-expression status. Both WtHBx and MutHBx proteins physically interact with p53 protein, but have different impacts on p53-mediated gene transcription. WtHBx did not effect p53-mediated gene transcription, whereas MutHBx inhibited it (P < 0.01). MutHBx inhibited colony formation in p53-proficient cells (P < 0.01), but not p53-deficient lines. Although both HBx proteins interact with p53, they affect p53-mediated gene transcription differently. WtHBx has no effect, whereas MutHBx inhibits it. In clonogenic survival assays, MutHBx inhibited cell growth in p53-proficient cells rather than enhanced it. This suggests that for MutHBx to behave oncogenically, the p53 pathway must be crippled or absent. This study has identified some important novel ways in which WtHBx and MutHBx differentially interact with p53 and this could begin to form the cellular explanation for the association between this particular mutant and liver cancer.

摘要

本研究考察了野生型乙型肝炎病毒 X 蛋白(WtHBx)和突变型 HBx(MutHBx)之间的差异活性,后者在核苷酸 1762 和 1764 处发生热点突变,导致密码子 130 处的赖氨酸变为甲硫氨酸,密码子 131 处的缬氨酸变为异亮氨酸。这种突变导致肝细胞癌,我们评估了 WtHBx 和 MutHBx 蛋白在与 p53 肿瘤抑制蛋白的相互作用方面有何不同。这是通过共免疫沉淀实验来解决的,该实验检查了 WtHBx 和 MutHBx 蛋白与 p53 的相互作用,报告基因实验确定了 HBx 蛋白对 p53 介导的基因转录的影响,以及集落形成存活实验评估了 HBx 对不同 p53 表达状态下细胞生长的影响。WtHBx 和 MutHBx 蛋白均可与 p53 蛋白发生物理相互作用,但对 p53 介导的基因转录有不同的影响。WtHBx 不会影响 p53 介导的基因转录,而 MutHBx 则抑制它(P < 0.01)。MutHBx 抑制 p53 功能正常细胞的集落形成(P < 0.01),但不抑制 p53 缺陷系。尽管两种 HBx 蛋白都与 p53 相互作用,但它们对 p53 介导的基因转录的影响不同。WtHBx 没有影响,而 MutHBx 则抑制它。在集落形成存活实验中,MutHBx 抑制 p53 功能正常细胞的生长,而不是增强它。这表明,对于 MutHBx 发挥致癌作用,p53 途径必须受损或缺失。本研究确定了 WtHBx 和 MutHBx 与 p53 相互作用的一些重要新途径,这可能开始为这种特定突变体与肝癌之间的关联形成细胞解释。

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