Colón G E, Nguyen T T, Jetten M S, Sinskey A J, Stephanopoulos G
Department of Chemical Engineering, MIT, Cambridge, MA 02139, USA.
Appl Microbiol Biotechnol. 1995 Jul;43(3):482-8. doi: 10.1007/BF00218453.
Overproduction of isoleucine, an essential amino acid, was achieved by amplification of the gene encoding threonine dehydratase, the first enzyme in the threonine to isoleucine pathway, in a Corynebacterium lactofermentum threonine producer. Threonine overproduction was previously achieved with C. lactofermentum ATCC 21799, a lysine-hyperproducing strain, by introduction of plasmid pGC42 containing the Corynebacterium homdr and thrB genes (encoding homoserine dehydrogenase and homoserine kinase respectively) under separate promoters. The pGC42 derivative, pGC77, also contains ilvA, which encodes threonine dehydratase. In a shake-flask fermentation, strain 21799(pGC77) produced 15 g/l isoleucine, along with small amounts of lysine and glycine. A molar carbon balance indicates that most of the carbon previously converted to threonine, lysine, glycine and isolecine was incorporated into isoleucine by the new strain. Thus, in our system, simple overexpression of wild-type ilvA sufficed to overcome the effects of feedback inhibition of threonine dehydratase by the end-product, isoleucine.
通过在乳糖发酵短杆菌苏氨酸生产菌株中扩增编码苏氨酸脱水酶(苏氨酸到异亮氨酸途径中的首个酶)的基因,实现了必需氨基酸异亮氨酸的过量生产。先前,乳糖发酵短杆菌ATCC 21799(一种赖氨酸高产菌株)通过导入质粒pGC42实现了苏氨酸的过量生产,该质粒含有在不同启动子控制下的棒状杆菌homdr和thrB基因(分别编码高丝氨酸脱氢酶和高丝氨酸激酶)。pGC42的衍生物pGC77还含有编码苏氨酸脱水酶的ilvA基因。在摇瓶发酵中,菌株21799(pGC77)产生了15 g/l的异亮氨酸,同时还有少量的赖氨酸和甘氨酸。摩尔碳平衡表明,新菌株将先前转化为苏氨酸、赖氨酸、甘氨酸和异亮氨酸的大部分碳都纳入了异亮氨酸中。因此,在我们的系统中,野生型ilvA的简单过表达足以克服终产物异亮氨酸对苏氨酸脱水酶的反馈抑制作用。