Unver Yagmur, Yildiz Melike, Kilic Deryanur, Taskin Mesut, Firat Abdulhadi, Askin Hakan
a Department of Molecular Biology and Genetics, Faculty of Science , Ataturk University , Erzurum , Turkey.
b Department of Chemistry, Sabire Yazıcı Faculty of Science and Letters , Aksaray University , Aksaray , Turkey.
Prep Biochem Biotechnol. 2018;48(6):535-540. doi: 10.1080/10826068.2018.1466160. Epub 2018 Jun 29.
PinX1 encoded by a remarkable tumor suppressor gene and located in human chromosome 8p23 is known as telomerase inhibitor. In recent years, this protein has been of interest as clinically tumor suppressor. Pichia pastoris expression system is preferred to produce heterologous proteins and is suitable for industrial and research purposes. In the present study, human PinX1 gene (hPinX1) was cloned in E. coli One Shot TOP10 cells and overexpressed in P. pastoris strain X-33 intracellularly, using a strong AOX (alcohol oxidase) promoter. The recombinant cells were grown in shaking flask. Induction time, methanol concentration and initial pH were optimized for obtaining high levels of hPinX1 protein production. Recombinant protein production was confirmed by Western blot analysis and the relative expression levels of rhPinX1 were quantified. According to Western blot analysis, molecular mass of produced hPinX1 was determined as 47.5 kDa. At the end of optimization studies, the best fermentation conditions were determined as induction time 48 h, methanol concentration 3% and initial culture pH 5.0. This process would be an applicable way for obtaining recombinant hPinX1 using P. pastoris expression system. This is the first report on recombinant production of hPinX1 in P. pastoris.
由一个重要的肿瘤抑制基因编码并位于人类8号染色体p23区域的PinX1被称为端粒酶抑制剂。近年来,这种蛋白质作为临床肿瘤抑制因子受到关注。毕赤酵母表达系统是生产异源蛋白的首选,适用于工业和研究目的。在本研究中,人类PinX1基因(hPinX1)被克隆到大肠杆菌One Shot TOP10细胞中,并利用强AOX(醇氧化酶)启动子在毕赤酵母X-33菌株中进行细胞内过表达。重组细胞在摇瓶中培养。对诱导时间、甲醇浓度和初始pH进行了优化,以获得高水平的hPinX1蛋白产量。通过蛋白质免疫印迹分析确认了重组蛋白的产生,并对rhPinX1的相对表达水平进行了定量。根据蛋白质免疫印迹分析,所产生的hPinX1的分子量确定为47.5 kDa。在优化研究结束时,确定最佳发酵条件为诱导时间48小时、甲醇浓度3%和初始培养pH 5.0。该方法将是利用毕赤酵母表达系统获得重组hPinX1的一种可行方法。这是关于在毕赤酵母中重组生产hPinX1的首次报道。