Veale R A, Giuseppin M L, van Eijk H M, Sudbery P E, Verrips C T
Unilever Research Laboratorium, Vlaardingen, The Netherlands.
Yeast. 1992 May;8(5):361-72. doi: 10.1002/yea.320080504.
A strain of the methylotrophic yeast Hansenula polymorpha, A16, has been developed that expresses the guar alpha-galactosidase gene to 22.4 mg/g dry cell weight in chemostat cultures at a dilution rate of 0.1 h(-1). This corresponds to more than 13.1% of soluble cell protein, of which 56-62% is secreted into the medium. The alpha-galactosidase gene was flanked by the promoter and terminator sequences of the H.polymorpha mox gene, which can direct expression of the mox gene itself more than 30% of total cell protein under methanol growth. The expression cassette (pUR3510) based on the Saccharomyces cerevisiae plasmid, YEp13, was integrated into the genome. Such transformants were stable in chemostat cultures and exhibited 100% stability for both alpha-galactosidase+ and leu+ phenotypes. Chemostat cultures produced higher levels of alpha-galactosidase with higher specific productivities expressed as mg alpha-galactosidase g(-1) h(-1) compared to batch cultures.
已培育出一种多形汉逊酵母菌株A16,在稀释率为0.1 h(-1)的恒化器培养中,其表达的瓜尔豆α-半乳糖苷酶基因达到22.4 mg/g干细胞重量。这相当于可溶性细胞蛋白的13.1%以上,其中56 - 62%分泌到培养基中。α-半乳糖苷酶基因两侧是多形汉逊酵母mox基因的启动子和终止子序列,在甲醇生长条件下,该序列可使mox基因自身的表达量超过总细胞蛋白的30%。基于酿酒酵母质粒YEp13的表达盒(pUR3510)被整合到基因组中。这种转化体在恒化器培养中是稳定的,并且对于α-半乳糖苷酶阳性和亮氨酸阳性表型均表现出100%的稳定性。与分批培养相比,恒化器培养产生的α-半乳糖苷酶水平更高,以mgα-半乳糖苷酶g(-1) h(-1)表示的比生产率更高。