The yeast Pichia pastoris was transformed by the multi\|copy Pichia expression vector that can express secreted human albumin.The high level expression of cell line was selected after screening.The expression of human...The yeast Pichia pastoris was transformed by the multi\|copy Pichia expression vector that can express secreted human albumin.The high level expression of cell line was selected after screening.The expression of human recombinant albumin in Pichia pastoris induced by different methods were compared.The retio of secreted human albumin is 80% in total secreted proteins and the expression level reaches as high as is 10g/L.展开更多
【目的】FAM3A(family with sequence similarity 3,memberA)为新近发现的细胞因子FAM3的家族成员之一,本研究检测FAM3A的相互作用蛋白。【方法】克隆FAM3A并连接到pGB载体,转化酵母Y190宿主菌,加入含主要信号传导细胞因子人cDNA文库,...【目的】FAM3A(family with sequence similarity 3,memberA)为新近发现的细胞因子FAM3的家族成员之一,本研究检测FAM3A的相互作用蛋白。【方法】克隆FAM3A并连接到pGB载体,转化酵母Y190宿主菌,加入含主要信号传导细胞因子人cDNA文库,按标准程序进行酵母双杂交,以X-Gal显色评估活性。提取扩增阳性克隆,连接pACT2载体,测序、检索基因库确定阳性克隆基因。克隆阳性基因并与FAM3A质粒共转染酵母进一步确定相互作用。【结果】酵母双杂交检测到一个与FAM3A相互作用的阳性克隆,提取扩增后测序分析此相互作用蛋白为一睾丸特异性丝氨酸/苏氨酸激酶(TSSK4),一种与精子的发育、成熟、及生育功能有关的蛋白质.共转染pGB-FAM3A质粒与pACT2-TSSK4质粒入Y190酵母证实上述相互作用。【结论】FAM3A可能通过与TSSK4的相互作用参与精子功能与生育能力的调节。展开更多
文摘The yeast Pichia pastoris was transformed by the multi\|copy Pichia expression vector that can express secreted human albumin.The high level expression of cell line was selected after screening.The expression of human recombinant albumin in Pichia pastoris induced by different methods were compared.The retio of secreted human albumin is 80% in total secreted proteins and the expression level reaches as high as is 10g/L.
文摘【目的】FAM3A(family with sequence similarity 3,memberA)为新近发现的细胞因子FAM3的家族成员之一,本研究检测FAM3A的相互作用蛋白。【方法】克隆FAM3A并连接到pGB载体,转化酵母Y190宿主菌,加入含主要信号传导细胞因子人cDNA文库,按标准程序进行酵母双杂交,以X-Gal显色评估活性。提取扩增阳性克隆,连接pACT2载体,测序、检索基因库确定阳性克隆基因。克隆阳性基因并与FAM3A质粒共转染酵母进一步确定相互作用。【结果】酵母双杂交检测到一个与FAM3A相互作用的阳性克隆,提取扩增后测序分析此相互作用蛋白为一睾丸特异性丝氨酸/苏氨酸激酶(TSSK4),一种与精子的发育、成熟、及生育功能有关的蛋白质.共转染pGB-FAM3A质粒与pACT2-TSSK4质粒入Y190酵母证实上述相互作用。【结论】FAM3A可能通过与TSSK4的相互作用参与精子功能与生育能力的调节。