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首页> 外文期刊>World Journal of Gastroenterology >Screening and identification of interacting proteins with hepatitis B virus core protein in leukocytes and cloning of new gene C1.
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Screening and identification of interacting proteins with hepatitis B virus core protein in leukocytes and cloning of new gene C1.

机译:白细胞中与乙肝病毒核心蛋白相互作用蛋白的筛选,鉴定及新基因C1的克隆

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AIM: To investigate the biological function of HBcAg in pathogenesis of HBV replication in peripheral blood mononuclear cells (PBMCs). METHODS: HBcAg region was amplified by polymerase chain reaction (PCR) and HBV HBcAg bait plasmid pGBKT7-HBcAg was constructed by routine molecular biological methods. Then the recombinant plasmid DNA was transformed into yeast AH109. After the HBV core protein was expressed in AH109 yeast strains (Western blot analysis), yeast-two hybrid screening was performed by mating AH109 with Y187 containing leukocyte cDNA library plasmid. Diploid yeast cells were plated on synthetic dropout nutrient medium (SD/-Trp-Leu-His-Ade) (QDO) and synthetic dropout nutrient medium (SD/-Trp-Leu-His-Ade) (TDO). The second screening was performed with the LacZ report gene ( yeast cells were grown in QDO medium containing X-alpha-gal). The interaction between HBV core protein and the protein obtained from positive colonies was further confirmed by repeating yeast-two hybrid. After plasmid DNAwas extracted from blue colonies and sequenced, the results were analyzed by bioinformatic methods. RESULTS: Eighteen colonies were obtained and sequenced, including hypermethylated in cancer 2 (3 colones), eukaryotic translation elongation factor 2 (2 colones), acetyl-coenzyme A synthetase 3 (1 colone), DNA polymerase gamma (1 colone), putative translation initiation factor (1 colone), chemokine (C-C motif) receptor 5 (1 colone), mitochondrial ribosomal protein L41 (1 colone), kyot binding protein genes (1 colone), RanBPM (1 colone), HBeAg-binding protein 3 (1 colone), programmed cell death 2 (1 colone). Four new genes with unknown function were identified. CONCLUSION: Successful cloning of genes of HBV core protein interacting proteins in leukocytes may provide some new clues for studying the biological functions of HBV core protein.
机译:目的:探讨HBcAg在外周血单个核细胞(PBMC)中HBV复制的发病机制中的生物学功能。方法:采用聚合酶链反应(PCR)扩增HBcAg区,采用常规分子生物学方法构建HBV HBcAg诱饵质粒pGBKT7-HBcAg。然后将重组质粒DNA转化到酵母AH109中。在AH109酵母菌株中表达HBV核心蛋白后(Western blot分析),通过将AH109与含有白细胞cDNA文库质粒的Y187配对,进行了酵母两次杂交筛选。将二倍体酵母细胞接种在合成的脱落营养培养基(SD / -Trp-Leu-His-Ade)(QDO)和合成的脱落营养培养基(SD / -Trp-Leu-His-Ade)(TDO)上。第二次筛选是用LacZ报告基因进行的(酵母细胞在含有X-alpha-gal的QDO培养基中生长)。 HBV核心蛋白与从阳性菌落获得的蛋白之间的相互作用通过重复酵母-两个杂种进一步证实。从蓝色菌落中提取质粒DNA并测序后,通过生物信息学方法对结果进行分析。结果:共获得18个菌落并测序,包括癌症2中的高甲基化(3个菌落),真核翻译延伸因子2(2个菌落),乙酰辅酶A合成酶3(1个菌落),DNA聚合酶γ(1个菌落),推定的翻译起始因子(1个克隆),趋化因子(CC基序)受体5(1个克隆),线粒体核糖体蛋白L41(1个克隆),结蛋白结合蛋白基因(1个克隆),RanBPM(1个克隆),HBeAg结合蛋白3(1克隆),程序性细胞死亡2(1个克隆)。确定了四个功能未知的新基因。结论:成功克隆白细胞中HBV核心蛋白相互作用蛋白的基因可能为研究HBV核心蛋白的生物学功能提供一些新的线索。

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