Di Girolamo M, Busiello V, Di Girolamo A, Foppoli C, De Marco C
Dipartimento di Scienze e Tecnologie, Biomediche e di Biometria-Università dell'Aquila.
Biochem Int. 1988 Sep;17(3):545-54.
A thialysine-resistant mutant of the E. coli KL16 strain was isolated. It can grow equally well in the presence and in the absence of thialysine. The properties of the two lysine transport systems, of the lysyl-tRNA synthetase and of the aspartokinase III (AK III) were studied in the mutant and in the parent strain. AK III is the first enzyme of the lysine biosynthetic pathway and its activity is involved in the regulation of lysine biosynthesis by feed-back and repression mechanism. No difference between the two strains was evidenced as regards 1) the affinity of the transport systems for lysine and thialysine 2) the activity of the lysyl-tRNA synthetase 3) the allosteric inhibition of the AK III by lysine and thialysine. A marked difference between the two strains has been evidenced in the AK III repression: in the mutant the enzyme is much less repressed both by lysine and thialysine. The possible correlation between the activity of AK III and the thialysine-resistance is discussed in this paper.
分离出了大肠杆菌KL16菌株的一种抗硫代赖氨酸突变体。它在有和没有硫代赖氨酸的情况下生长得同样良好。在突变体和亲本菌株中研究了两种赖氨酸转运系统、赖氨酰-tRNA合成酶和天冬氨酸激酶III(AK III)的特性。AK III是赖氨酸生物合成途径的第一种酶,其活性通过反馈和阻遏机制参与赖氨酸生物合成的调节。在以下方面未证明两种菌株之间存在差异:1)转运系统对赖氨酸和硫代赖氨酸的亲和力;2)赖氨酰-tRNA合成酶的活性;3)赖氨酸和硫代赖氨酸对AK III的变构抑制。在AK III阻遏方面已证明两种菌株之间存在显著差异:在突变体中,该酶受赖氨酸和硫代赖氨酸的抑制程度要小得多。本文讨论了AK III的活性与抗硫代赖氨酸之间可能的相关性。