Shi Ying, Wang Junwei, Wang Yuhe, Wang Anna, Guo Hongliang, Wei Feili, Mehta Sanjay R, Espitia Stephen, Smith Davey M, Liu Longgen, Zhang Yulin, Chen Dexi
Capital Medical University Affiliated Beijing Youan Hospital, Beijing Institute of Hepatology, Beijing 100054, China.
Capital Medical University Affiliated Beijing Youan Hospital, Beijing Institute of Hepatology, Beijing 100054, China; Shandong Cancer Hospital and Institute, Jinan, China.
Cancer Lett. 2016 Feb 28;371(2):285-91. doi: 10.1016/j.canlet.2015.12.008. Epub 2015 Dec 17.
Hepatitis B virus (HBV) infection-related hepatocellular carcinoma (HCC) represents a major health problem worldwide. HBV X (HBx) protein is the most common open reading frame that may undergo mutations, resulting in the development of HCC. This study aimed to determine specific HBx mutations that differentiate the central- and para-tumor tissues, and identify their association with HCC development. HBx gene from HCC tumor and para-tumor tissues of 47 HCC patients was amplified, sequenced and statistically analyzed. A novel combination of 2 mutations at residues 10 and 144 was identified which might play a significant role in HCC development. Expression vectors carrying HBx with the specific mutations were constructed and transfected into HepG2 and p53-null HepG2 cells. Compared to wild type (WT) and single mutation of HBx at residue 10 or 144, the 10/144 double mutations strongly up-regulated p21 expression and prolonged G1/S transition in WT- and p53-null HepG2 cells. Apoptosis was also inhibited by HBx harboring 10/44 double-mutation. Binding of 10/144 double-mutant HBx to p53 was lower than WT HBx. Conclusively, the 10/144 double mutation of HBx might play a crucial role in HCC formation.
乙型肝炎病毒(HBV)感染相关的肝细胞癌(HCC)是全球主要的健康问题。HBV X(HBx)蛋白是最常见的可能发生突变的开放阅读框,会导致HCC的发生。本研究旨在确定区分肿瘤中心组织和肿瘤旁组织的特定HBx突变,并确定它们与HCC发生的关联。对47例HCC患者的HCC肿瘤组织和肿瘤旁组织的HBx基因进行扩增、测序和统计分析。鉴定出一种新的位于第10位和第144位残基的2个突变的组合,其可能在HCC发生中起重要作用。构建携带具有特定突变的HBx的表达载体,并将其转染到HepG2和p53缺失的HepG2细胞中。与野生型(WT)以及HBx在第10位或第144位残基的单突变相比,10/144双突变在WT-和p53缺失的HepG2细胞中强烈上调p21表达并延长G1/S期转换。携带10/44双突变的HBx也抑制细胞凋亡。10/144双突变HBx与p53的结合低于WT HBx。总之,HBx的10/144双突变可能在HCC形成中起关键作用。