Brown A T, Wittenberger C L
J Bacteriol. 1972 May;110(2):604-15. doi: 10.1128/jb.110.2.604-615.1972.
The lactate dehydrogenase (LDH) from Streptococcus mutans NCTC 10449 is under stringent metabolic control. The partially purified enzyme was specifically activated by high concentrations of fructose-1,6-diphosphate (FDP) and was inhibited by adenosine triphosphate. There appeared to be at least two binding sites for the activator which interacted in a cooperative manner. The interaction between the FDP sites was independent of the pH of the assay system, although the relative affinity of the enzyme for the activator was influenced by pH. There also appeared to be at least two pyruvate binding sites on the S. mutans LDH with some cooperative interaction between them, and the interaction between these sites was also independent of the hydrogen ion concentration. Two pyruvate analogues had different effects on the interaction of pyruvate with the LDH. One of the analogues, alpha-ketobutyrate, stimulated enzyme activity at limiting pyruvate concentrations, but had no significant effect at saturating concentrations of the substrate. The net effect of alpha-ketobutyrate was to shift the pyruvate saturation curve from sigmoidal to hyperbolic and to decrease the Hill coefficient from about 2.0 to 1.0. The other pyruvate analogue, oxamate, inhibited enzyme activity at all pyruvate concentrations but had no effect on the sigmoidal nature of the pyruvate saturation curve or on the apparent kinetic order of the reaction with respect to substrate. These results suggested that there may be two types of pyruvate binding sites on the LDH from S. mutans. Other kinetic properties of the S. mutans NCTC 10449 enzyme were studied and compared with those exhibited by the LDH from several other strains of the organism.
变形链球菌NCTC 10449的乳酸脱氢酶(LDH)受到严格的代谢调控。部分纯化的该酶被高浓度的果糖-1,6-二磷酸(FDP)特异性激活,并被三磷酸腺苷抑制。激活剂似乎至少有两个结合位点,它们以协同方式相互作用。FDP位点之间的相互作用与测定系统的pH无关,尽管酶对激活剂的相对亲和力受pH影响。变形链球菌LDH上似乎也至少有两个丙酮酸结合位点,它们之间存在一些协同相互作用,并且这些位点之间的相互作用也与氢离子浓度无关。两种丙酮酸类似物对丙酮酸与LDH的相互作用有不同影响。其中一种类似物α-酮丁酸在丙酮酸浓度有限时刺激酶活性,但在底物饱和浓度时无显著影响。α-酮丁酸的净效应是使丙酮酸饱和曲线从S形变为双曲线形,并使希尔系数从约2.0降至1.0。另一种丙酮酸类似物草氨酸在所有丙酮酸浓度下均抑制酶活性,但对丙酮酸饱和曲线的S形性质或反应相对于底物的表观动力学级数无影响。这些结果表明,变形链球菌的LDH上可能存在两种类型的丙酮酸结合位点。对变形链球菌NCTC 10449酶的其他动力学性质进行了研究,并与该生物体其他几个菌株的LDH所表现出的性质进行了比较。