Hensel R, Mayr U, Stetter K O, Kandler O
Arch Microbiol. 1977 Feb 4;112(1):81-93. doi: 10.1007/BF00446658.
The stability, pH-dependence and kinetic properties of the Mn2+ and FDP-activated NAD-dependent lactic acid dehydrogenases from Lactobacillus casei ssp. casei (ATCC 393) and L. curvatus (DSM 20010) were studied after the enzymes were purified to homogeneity by affinity chromatography. Both enzymes are virtually unidirectional, catalysing efficiency only the reduction of pyruvate. They are similar with respect to the effector requirement and pH-optimum. They differ, however, in their electrophoretic mobility, heat stability, pH-dependence of the Mn2+ requirement and several kinetic properties. It is suggested that most of these differences are caused by differences of the negative charges in the vicinity of the FDP-binding site or the site responsible for the interaction of the subunits of the enzymatically active oligomeres.
通过亲和层析将干酪乳杆菌干酪亚种(ATCC 393)和弯曲乳杆菌(DSM 20010)的Mn2+和FDP激活的NAD依赖型乳酸脱氢酶纯化至同质后,研究了它们的稳定性、pH依赖性和动力学性质。两种酶实际上都是单向的,仅催化丙酮酸的还原反应。它们在效应物需求和最适pH方面相似。然而,它们在电泳迁移率、热稳定性、Mn2+需求的pH依赖性以及一些动力学性质方面存在差异。有人认为,这些差异大多是由FDP结合位点附近或负责酶活性寡聚体亚基相互作用的位点的负电荷差异引起的。