Kisumi M, Kato J, Komatsubara S, Chibata I
Appl Microbiol. 1971 Apr;21(4):569-74. doi: 10.1128/am.21.4.569-574.1971.
Several alpha-aminobutyric acid-resistant (Abu-r) mutants of Serratia marcescens were found to be superior to the parent strain in converting d-threonine to l-isoleucine. One of them accumulated 1.5 times more l-isoleucine that the parent strain. The level of acetohydroxy acid (AHA) synthetase in this mutant increased twofold above that of the parent strain. In the parent strain, AHA synthetase was repressed and l-isoleucine accumulation was decreased by either l-valine or l-leucine, whereas in the mutant the AHA synthetase level and l-isoleucine accumulation were not affected by these amino acids. AHA synthetase of the Abu-r mutant was feedback-inhibited by l-valine to the same extent as that of the parent strain. The level of d-threonine dehydratase in both strains was only slightly affected by several amino acids tested. l-Threonine dehydratase of the parent strain and of the mutant was almost completely inhibited by l-isoleucine. These results indicate that the increase in l-isoleucine accumulation by Abu-r mutants is due to the genetic derepression of AHA synthetase.
发现粘质沙雷氏菌的几个抗α-氨基丁酸(Abu-r)突变体在将d-苏氨酸转化为l-异亮氨酸方面优于亲本菌株。其中一个突变体积累的l-异亮氨酸比亲本菌株多1.5倍。该突变体中乙酰羟酸(AHA)合成酶的水平比亲本菌株高出两倍。在亲本菌株中,AHA合成酶受到l-缬氨酸或l-亮氨酸的抑制,l-异亮氨酸的积累减少,而在突变体中,AHA合成酶水平和l-异亮氨酸的积累不受这些氨基酸的影响。Abu-r突变体的AHA合成酶受到l-缬氨酸的反馈抑制,其程度与亲本菌株相同。两种菌株中d-苏氨酸脱水酶的水平仅受到所测试的几种氨基酸的轻微影响。亲本菌株和突变体的l-苏氨酸脱水酶几乎完全被l-异亮氨酸抑制。这些结果表明,Abu-r突变体中l-异亮氨酸积累的增加是由于AHA合成酶的基因去阻遏。