Li Linbo, Fan Daidi, Ma Xiaoxuan, Deng Jianjun, He Jing
Shaanxi Key Laboratory of Degradable Biomedical Materials, Northwest University, Shaanxi, People's Republic of China.
Shaanxi R&D Center of Biomaterials and Fermentation Engineering, School of Chemical Engineering, Northwest University, Xi'an, People's Republic of China.
Biotechnol Appl Biochem. 2015 Jul-Aug;62(4):467-75. doi: 10.1002/bab.1297. Epub 2015 Jan 5.
Recombinant collagen and gelatin have been applied in biomedical materials field because of products from genetically engineered microorganisms with improved safety, traceability, reproducibility, and homogeneous quality. To obtain high-level secretory expression of single-chain full-length human collagen α1(III) chain (COL3A1) without the N and C telopeptides, the cDNA coding for the human COL3A1 gene was cloned into the secretory expression vector pPIC9K and integrated into Pichia pastoris GS115. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis and Western blotting analysis of culture supernatant from the recombinant methylotrophic yeast suggested that the unhydroxylated recombinant human COL3A1 (rhCOL3A1) was secreted into the culture medium, and exhibited an apparent molecular mass of approximately 130 kDa, which is 1.4 times higher than the theoretical one. Finally, the unhydroxylated rhCOL3A1 was purified to greater than 90% purity using a four-step approach. In addition, methylthiazolydiphenyl-tetrazolium bromide experiments indicated that low concentration of rhCOL3A1 could promote Baby hamster kidney cell (BHK21) proliferation effectively. The production and purification of rhCOL3A1 described in this study offer a new method for obtaining high level of rhCOL3A1 in relatively pure form, which is suitable for biomedical materials application.
重组胶原蛋白和明胶已应用于生物医学材料领域,因为其产品来源于基因工程微生物,具有更高的安全性、可追溯性、可重复性和均一的质量。为了获得不含N端和C端肽段的单链全长人胶原蛋白α1(III)链(COL3A1)的高水平分泌表达,将编码人COL3A1基因的cDNA克隆到分泌表达载体pPIC9K中,并整合到毕赤酵母GS115中。对重组甲基营养酵母培养上清液进行的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和蛋白质免疫印迹分析表明,未羟化的重组人COL3A1(rhCOL3A1)分泌到培养基中,其表观分子量约为130 kDa,比理论值高1.4倍。最后,采用四步法将未羟化的rhCOL3A1纯化至纯度大于90%。此外,噻唑蓝实验表明,低浓度的rhCOL3A1能有效促进幼仓鼠肾细胞(BHK21)增殖。本研究中rhCOL3A1的生产和纯化提供了一种以相对纯的形式获得高水平rhCOL3A1的新方法,适用于生物医学材料应用。