Mayson Brian E, Kilburn Douglas G, Zamost Bruce L, Raymond Christopher K, Lesnicki Gary J
The Biotechnology Laboratory, The University of British Columbia, Vancouver, BC V6T 1Z3, Canada.
Biotechnol Bioeng. 2003 Feb 5;81(3):291-8. doi: 10.1002/bit.10464.
The methylotrophic yeast Pichia methanolica can be used to express recombinant genes at high levels under the control of the methanol-inducible alcohol oxidase (AUG1) promoter. Methanol concentrations during the induction phase directly affect cellular growth and protein yield. Various methanol concentrations controlled by an on-line monitoring and control system were investigated in mixed glucose/methanol fed-batch cultures of P. methanolica expressing the human transferrin N-lobe protein. The PMAD18 P. methanolica strain utilized is a knock-out for the chromosomal AUG1 gene locus, resulting in a slow methanol utilization phenotype. Maximum growth of 100 g of dry cell weight per liter of culture was observed in cultures grown at 1.0% (v/v) methanol concentration. Maximum recombinant gene expression was observed for cultures controlled at 0.7% (v/v) methanol concentration, resulting in maximum volumetric production of 450 mg of transferrin per liter after 72 h of elapsed fermentation time.
甲基营养型酵母甲醇毕赤酵母可用于在甲醇诱导型醇氧化酶(AUG1)启动子的控制下高水平表达重组基因。诱导阶段的甲醇浓度直接影响细胞生长和蛋白质产量。在表达人转铁蛋白N-叶蛋白的甲醇毕赤酵母的混合葡萄糖/甲醇补料分批培养中,研究了由在线监测和控制系统控制的各种甲醇浓度。所使用的PMAD18甲醇毕赤酵母菌株是染色体AUG1基因座的敲除株,导致甲醇利用缓慢的表型。在甲醇浓度为1.0%(v/v)的培养物中观察到每升培养物最大干重为100 g的生长。在甲醇浓度为0.7%(v/v)控制的培养物中观察到最大重组基因表达,发酵72小时后每升最大体积产量为450 mg转铁蛋白。