Lu Yin-Ying, Cheng Jun, Yang Yong-Ping, Liu Yan, Wang Lin, Li Ke, Zhang Ling-Xia
Gene Therapy Research Center, Institute of Infectious Diseases, The 302 Hospital of PLA, 100 Xisihuanzhong Road, Beijing 100039, China.
World J Gastroenterol. 2005 Sep 28;11(36):5666-71. doi: 10.3748/wjg.v11.i36.5666.
To elucidate the biological function of HBV core antigen (HBcAg) on pathogenesis of hepatitis B, a novel gene C12 coding for protein with unknown function interacting with HBcAg in hepatocytes was identified and characterized.
HBcAg bait plasmid pGBKT7-HBcAg was constructed and transformed into yeast AH109, then the transformed yeast was mated with yeast Y187 containing liver complementary DNA (cDNA) library plasmid in 2XYPDA medium. Diploid yeast was plated on synthetic dropout nutrient medium (SD/-Trp-Leu-His-Ade) and synthetic dropout nutrient medium (SD/-Trp-Leu-His-Ade) containing X-alpha-gal for screening twice. After extracting and sequencing of plasmid from blue colonies, we isolated a cDNA clone encoding a novel protein designated as C12 that directly interacted with HBcAg. The interaction between HBcAg and C12 was verified again by re-mating. pEGFP-N1-C12 fluorescent protein fusion gene was transfected in 293 and L02 cell, and observed by fluorescent microscope. MTT reduction assay was used to study the action of C12 protein effect on metabolism of mammal cell. Yeast two-hybrid and cDNA microarray were performed to search binding protein and differential expression genes regulated by C12 protein.
C12 gene was screened and identified by yeast two-hybrid system 3. The interaction between HBcAg and the novel protein coded by the new gene C12 was further confirmed by re-mating. After 48 h, fluorescence of fusion protein could be observed steadily in the 293 and L02 cell plasma. Under MTT assay, we found that the expression of C12 did not influence the growth of liver cells. Seventeen differential expression genes in HepG2 cells transfected with C12 protein expression plasmid by cDNA microarray, of which 16 genes were upregulated and 1 gene was downregulated by C12 protein. Twenty-one colonies containing 16 different genes coding for C12 protein binding proteins were isolated by yeast two-hybrid, there were 2 new genes with unknown function.
The novel protein C12 is located in cell plasma, and its overexpression has no significant effect on the metabolism of liver cell. It interacts with many proteins in hepatocytes and may be involved in many processes of gene expression.
为阐明乙肝核心抗原(HBcAg)在乙型肝炎发病机制中的生物学功能,鉴定并表征了一个在肝细胞中编码与HBcAg相互作用的功能未知蛋白的新基因C12。
构建HBcAg诱饵质粒pGBKT7-HBcAg并转化至酵母AH109,然后将转化后的酵母与含有肝脏互补DNA(cDNA)文库质粒的酵母Y187在2XYPDA培养基中进行杂交。将二倍体酵母接种在合成缺陷营养培养基(SD/-Trp-Leu-His-Ade)和含有X-α-半乳糖的合成缺陷营养培养基(SD/-Trp-Leu-His-Ade)上进行两次筛选。从蓝色菌落中提取质粒并测序后,我们分离出一个编码与HBcAg直接相互作用的名为C12的新蛋白的cDNA克隆。通过再次杂交再次验证了HBcAg与C12之间的相互作用。将pEGFP-N1-C12荧光蛋白融合基因转染至293和L02细胞中,并通过荧光显微镜观察。采用MTT还原试验研究C12蛋白对哺乳动物细胞代谢的作用。进行酵母双杂交和cDNA微阵列分析以寻找C12蛋白调节的结合蛋白和差异表达基因。
通过酵母双杂交系统3筛选并鉴定了C12基因。通过再次杂交进一步证实了HBcAg与新基因C12编码的新蛋白之间的相互作用。48小时后,在293和L02细胞质中可稳定观察到融合蛋白的荧光。在MTT试验中,我们发现C12的表达不影响肝细胞的生长。通过cDNA微阵列分析,在转染C12蛋白表达质粒的HepG2细胞中有17个差异表达基因,其中16个基因被C12蛋白上调,1个基因被下调。通过酵母双杂交分离出21个含有编码C12蛋白结合蛋白的16个不同基因的菌落,其中有2个功能未知的新基因。
新蛋白C12定位于细胞质中,其过表达对肝细胞代谢无显著影响。它与肝细胞中的许多蛋白相互作用,可能参与基因表达的许多过程。