Weikert C, Sauer U, Bailey J E
Institute of Biotechnology, ETH Zürich, CH-8093 Zürich, Switzerland.
Biotechnol Prog. 1998 May-Jun;14(3):420-4. doi: 10.1021/bp980030u.
Chemostat selection at low dilution rate in glycerol-limited minimal medium was previously employed to isolate the mutant Escherichia coli strain CWML2 which exhibits shorter lag phases, decreased acetate production, and higher specific growth rates and biomass yields in batch culture (Weikert, C.; Sauer, U.; Bailey, J. E. Microbiology 1997, 143, 1567-1574). In this study, CWML2 was analyzed for its biochemical production capabilities in batch culture and under nongrowing conditions. Both CWML2 and MG1655 were transformed with plasmid pSY130-14, which encodes feedback resistant mutants of the enzymes chorismate mutase P-prephenate synthase and 3-hydroxy-d-arabinoheptulosonate-7-phosphate dehydratase, to enable phenylalanine production. In batch culture, transformed CWML2 produced twice as much phenylalanine as did MG1655:pSY130-14. In contrast to the reference strain, substantial growth-independent production of phenylalanine was calculated for CWML2:pSY130-14 by using Luedeking-Piret kinetic analysis. Over a period of 30 h, nongrowing cells of CWML2:pSY130-14 exhibited a 2.5-fold higher specific phenylalanine production rate. The apparent capability of E. coli CWML2 to partly uncouple metabolic activity from growth suggests a potentially general advantage of this class of modified hosts for production of biochemicals.
先前在甘油限制的基本培养基中以低稀释率进行恒化器筛选,以分离突变型大肠杆菌菌株CWML2,该菌株在分批培养中表现出较短的延迟期、降低的乙酸盐产量以及更高的比生长速率和生物量产量(韦克特,C.;绍尔,U.;贝利,J.E.《微生物学》1997年,第143卷,第1567 - 1574页)。在本研究中,对CWML2在分批培养和非生长条件下的生化产物生产能力进行了分析。CWML2和MG1655都用质粒pSY130 - 14进行了转化,该质粒编码分支酸变位酶 - 预苯酸合酶和3 - 羟基 - D - 阿拉伯庚酮糖 - 7 - 磷酸脱水酶的反馈抗性突变体,以实现苯丙氨酸的生产。在分批培养中,转化后的CWML2产生的苯丙氨酸是MG1655:pSY130 - 14的两倍。与参考菌株相比,通过吕德金 - 皮雷特动力学分析计算得出,CWML2:pSY130 - 14在很大程度上不依赖生长而生产苯丙氨酸。在30小时的时间里,CWML2:pSY130 - 14的非生长细胞表现出比苯丙氨酸生产率高2.5倍。大肠杆菌CWML2能够将代谢活性与生长部分解偶联的明显能力表明,这类经过改造的宿主在生产生化物质方面可能具有普遍优势。