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运用PCR技术获得HBx基因,分别克隆到原核表达载体pET-his和真核表达载体pcDNA3.1(-)上。重组质粒pET-his-HBx转化大肠杆菌BL21(DE3)后,IPTG诱导表达,利用Ni柱纯化后的蛋白免疫家兔,获得特异性的抗-HBx兔抗血清。重组质粒pcDNA3.1(-)-HBx分别转染HepG2和Hep3B细胞系后,经RT-PCR和Westernblot检测,证明HBx可以在这两种细胞系中表达。通过报告基因的表达研究了HBx对XBP1和GRP78启动子的激活活性,结果表明瞬时转染HBx的细胞系中,XBP1和GRP78启动子介导的荧光素酶活性比相应的对照细胞增加了3~7倍。通过RT-PCR分析证明,转染了HBx的细胞中XBP1mRNA发生了剪切。因此,可以初步推断HBx在HepG2和Hep3B细胞中的表达可以引起内质网压力反应,为进一步阐明HBx表达对内质网的影响和肝脏病原发生机制奠定了基础。  相似文献   

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The X protein from a chronic strain of hepatitis B virus (HBx) was determined to inhibit Fas-mediated apoptosis and promote cell survival. Fas-mediated apoptosis is the major cause of hepatocyte damage during liver disease. Experiments demonstrated that cell death caused by anti-Fas antibodies was blocked by the expression of HBx in human primary hepatocytes and mouse embryo fibroblasts. This effect was also observed in mouse erythroleukemia cells that lacked p53, indicating that protection against Fas-mediated apoptosis was independent of p53. Components of the signal transduction pathways involved in this protection were studied. The SAPK/JNK pathway has previously been suggested to be a survival pathway for some cells undergoing Fas-mediated apoptosis, and kinase assays showed that SAPK activity was highly up-regulated in cells expressing the HBx protein. Normal mouse fibroblasts expressing HBx were protected from death, whereas identical fibroblasts lacking the SEK1 component from the SAPK pathway succumbed to Fas-mediated apoptosis, whether HBx was present or not. Assays showed that caspase 3 and 8 activities and the release of cytochrome c from mitochondria were inhibited, in the presence of HBx, following stimulation with anti-Fas antibodies. Coprecipitation and confocal immunofluorescence microscopy experiments demonstrated that HBx localizes with a cytoplasmic complex containing MEKK1, SEK1, SAPK, and 14-3-3 proteins. Finally, mutational analysis of HBx demonstrated that a potential binding region for 14-3-3 proteins was essential for induction of SAPK/JNK activity and protection from Fas-mediated apoptosis.  相似文献   

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目的:建立基于细胞水平的inositol-requiring 1/X-box-binding protein 1 (IRE1/XBP1)信号通路高通量筛选模型,用于发现新型IRE1/XBP1信号通路抑制剂。方法:构建pCAX-F-XBP1△DBD-luciferase质粒,并与pcDNA3.1质粒共转人胚肾细胞HEK293,G418抗性筛选获得多个稳定表达荧光素酶的单克隆。结果:首先利用内质网应激诱导剂衣霉素(tunicamycin,TM)考察单克隆对内质网应激反应的敏感性,确定6#单克隆用于后续研究;其次对细胞接种量、溶剂DMSO终浓度和TM的作用浓度与孵育时间等条件进行优化,最终确定高通量筛选模型条件, Z'因子达到0.62;最后对包含多个激酶抑制剂在内的449个化合物进行筛选,发现27个潜在的IRE1/XBP1抑制剂,其中MG132、Sunitinib和Staurosporine的IC50分别为6.61(±1.51)μmol/L、6.25(±0.36)μmol/L和48(±8)nmol/L。结论:成功建立有效靶向IRE1/XBP1信号通路的高通量药物筛选模型,为基于IRE1/XBP1信号通路为靶点的药物发现奠定坚实基础。  相似文献   

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