Kim Myoung-Dong, Han Ki-Cheol, Kang Hyun-Ah, Rhee Sang-Ki, Seo Jin-Ho
Department of Food Science and Technology, Research Center for New Bio-Materials in Agriculture, Seoul National University, Suwon 441-744, South Korea.
J Biotechnol. 2003 Feb 27;101(1):81-7. doi: 10.1016/s0168-1656(02)00288-2.
In order to increase a production level of antithrombotic hirudin, BiP was simultaneously expressed in recombinant Saccharomyces cerevisiae strains carrying ten and 15 copies of the hirudin expression cassette integrated in the chromosome. Coexpression of BiP greatly enhanced both cell growth and hirudin production in recombinant S. cerevisiae. Maximum hirudin concentration of 36 mg l(-1) was obtained from batch culture of the ten copy-number transformant concomitantly harboring an episomal copy of the BiP gene under the control of the GAL1 promoter, which is corresponding to a 2.5-fold increase compared with the control strain carrying the genomic BiP gene only. The mean size of the recombinant yeast cells expressing the BiP gene remained at a relatively constant level compared with the control strains of which size increased after the onset of hirudin expression by the GAL10 promoter.
为了提高抗血栓水蛭素的生产水平,在携带整合于染色体上的10个和15个水蛭素表达盒拷贝的重组酿酒酵母菌株中同时表达BiP。BiP的共表达极大地促进了重组酿酒酵母的细胞生长和水蛭素生产。从携带在GAL1启动子控制下的BiP基因附加型拷贝的10拷贝数转化体的分批培养中获得了36 mg l(-1)的最大水蛭素浓度,与仅携带基因组BiP基因的对照菌株相比,这相当于增加了2.5倍。与对照菌株相比,表达BiP基因的重组酵母细胞的平均大小保持在相对恒定的水平,对照菌株在GAL10启动子启动水蛭素表达后大小增加。