Kisumi M, Komatsubara S, Chibata I
J Bacteriol. 1971 May;106(2):493-9. doi: 10.1128/jb.106.2.493-499.1971.
alpha-Aminobutyric acid, norvaline, and norleucine, which are analogues of branched-chain amino acids, inhibited the growth of Serratia marcescens. The inhibitory effect of these three analogues was counteracted by branched-chain amino acids. A number of mutants resistant to these analogues were isolated. alpha-Aminobutyric acid-resistant (abu-r) mutants markedly accumulated l-valine in the culture medium, but the other analogue-resistant mutants did not. Acetohydroxy acid synthetase, which seems to be rate-limiting for the biosynthesis of l-valine, was derepressed in abu-r mutants. One of the abu-r mutants, no. 140, which accumulated over 8 mg of l-valine per ml, had about a 20-fold increase in the enzyme level. Most of the abu-r mutants had acetohydroxy acid synthetase activity which was sensitive to feedback inhibition by l-valine to the same extent as in the parent strain. However, the enzyme of two of abu-r mutants was less sensitive to l-valine, and one of the two was the best valine accumulator.
α-氨基丁酸、正缬氨酸和正亮氨酸是支链氨基酸的类似物,它们抑制了粘质沙雷氏菌的生长。这三种类似物的抑制作用可被支链氨基酸抵消。分离出了许多对这些类似物具有抗性的突变体。对α-氨基丁酸具有抗性(abu-r)的突变体在培养基中显著积累L-缬氨酸,但其他对类似物具有抗性的突变体则没有。乙酰羟酸合成酶似乎是L-缬氨酸生物合成的限速酶,在abu-r突变体中该酶被去阻遏。其中一个abu-r突变体,编号140,每毫升积累超过8毫克的L-缬氨酸,其酶水平增加了约20倍。大多数abu-r突变体的乙酰羟酸合成酶活性对L-缬氨酸反馈抑制的敏感程度与亲本菌株相同。然而,其中两个abu-r突变体的酶对L-缬氨酸的敏感性较低,其中一个是积累缬氨酸最多的突变体。