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Hepatocarcinogenesis in transgenic mice carrying hepatitis B virus pre-S/S gene with the sW172* mutation

机译:携带带有sW172 *突变的乙型肝炎病毒前S / S基因的转基因小鼠的肝癌发生

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摘要

[[abstract]]Hepatitis B virus (HBV) carrying the rtA181T/sW172* mutation conferred cross-resistance to adefovir and lamivudine. Cell-based and clinical studies indicated that HBV carrying this mutation had an increased oncogenic potential. Herein, we created transgenic mouse models to study the oncogenicity of the HBV pre-S/S gene containing this mutation. Transgenic mice were generated by transfer of the HBV pre-S/S gene together with its own promoter into C57B6 mice. Four lines of mice were created. Two of them carried wild-type gene and produced high and low levels of HBV surface antigen (HBsAg) (TgWT-H and L). The other two carried the sW172* mutation with high and low intrahepatic expression levels (TgSW172*-H and L). When sacrificed 18 months after birth, none of the TgWT mice developed hepatocellular carcinoma (HCC), whereas 6/26 (23.1%) TgSW172*-H and 2/24 (8.3%) TgSW172*-L mice developed HCC (TgWT vs TgSW172*; P=0.0021). Molecular analysis of liver tissues revealed significantly increased expression of glucose-regulated protein 78 and phosphorylated extracellular signal-regulated kinases 1 in TgSW172* mice, and decreased expression of B-cell lymphoma-extra large in TgSW172*-H mice. Higher proportion of apoptotic cells was found in TgSW172*-H mice, accompanied by increased cyclin E levels, suggesting increased hepatocyte turnover. Combined analysis of complimentary DNA microarray and microRNA array identified microRNA-873-mediated reduced expression of the CUB and Sushi multiple domains 3 (CSMD3) protein, a putative tumor suppressor, in TgSW172* mice. Our transgenic mice experiments confirmed that HBV pre-S/S gene carrying the sW172* mutation had an increased oncogenic potential. Increased endoplasmic reticulum stress response, more rapid hepatocyte turnover and decreased CSMD3 expression contributed to the hepatocarcinogenesis.
机译:[[摘要]]带有rtA181T / sW172 *突变的乙型肝炎病毒(HBV)赋予了对阿德福韦和拉米夫定的交叉耐药性。基于细胞的研究和临床研究表明,携带这种突变的HBV具有增加的致癌潜力。在这里,我们创建了转基因小鼠模型,以研究包含该突变的HBV pre-S / S基因的致癌性。通过将HBV pre-S / S基因及其自身的启动子转移到C57B6小鼠中来产生转基因小鼠。创建四行小鼠。其中两个携带野生型基因,并产生高和低水平的HBV表面抗原(HBsAg)(TgWT-H和L)。其他两个带有高和低肝内表达水平的sW172 *突变(TgSW172 * -H和L)。在出生后18个月处死时,没有TgWT小鼠发生肝细胞癌(HCC),而6/26(23.1%)TgSW172 * -H和2/24(8.3%)TgSW172 * -L小鼠发生了HCC(TgWT与TgSW172 *; P = 0.0021)。肝组织的分子分析显示,TgSW172 *小鼠体内葡萄糖调节蛋白78和磷酸化的细胞外信号调节激酶1的表达显着增加,而TgSW172 * -H小鼠中超大型B细胞淋巴瘤的表达降低。在TgSW172 * -H小鼠中发现较高比例的凋亡细胞,并伴有细胞周期蛋白E水平升高,表明肝细胞更新率增加。互补DNA微阵列和microRNA阵列的组合分析确定了TgSW172 *小鼠中microRNA-873介导的CUB和Sushi多结构域3(CSMD3)蛋白(一种假定的肿瘤抑制因子)的表达降低。我们的转基因小鼠实验证实携带sW172 *突变的HBV pre-S / S基因具有增加的致癌潜能。内质网应激反应增加,肝细胞更新更快和CSMD3表达降低导致肝癌发生。

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    Lai, MW;

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  • 年度 2017
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