Alvarez-Villafañe E, Soler J, del Valle P, Busto F, de Arriaga D
Departamento de Bioquímica y Biología Molecular, Universidad de León, Spain.
Biochemistry. 1996 Apr 16;35(15):4741-52. doi: 10.1021/bi951268j.
Two forms of NAD+-isocitrate dehydrogenase, named ICDH-1 and ICDH-2, have been identified and purified in Phycomyces blakesleeanus NRRL-1555(-). These enzymes forms may be separated by chromatography on DEAE-Sephacel. ICDH-2 induction was a response to the adaptation of Phycomyes growth on acetate as the carbon source. Both enzyme forms were octamers of 388 + or - 30 kDa with apparently identical subunits of 40.5 +/- 5 kDa, but they were distinguishable by their electrophoretic mobilities on polyacrylamide gel electrophoresis. Isoelectric pH values were 5.28 and 4.96 for ICDH-1 and ICDH-2, respectively. ICDH-2 was more stable to urea denaturation than ICDH-1. At pH 7.6, ICDH-1 showed a markedly sigmoidal kinetic behavior with respect to isocitrate. However, ICDH-1 and ICDH-2 showed hyperbolic kinetics with respect to NAD+. THe tribasic form of isocitrate (I3-) and its magnesium complex (MI-) are the true substrates for both enzyme forms. Kinetic data obtained with Mg2+ as a divalent cation for both enzyme forms are compatible with the kinetic mechanism proposed by Cohen and Colman (1974) [Eur. J. Biochem. 47, 35-45] but assuming some degree of interaction between binding sites for the active form of isocitrate. This report describes for the first time the existence of two forms of NAD+-isocitrate dehydrogenase in filamentous fungi. From the changes in activity levels for each form, during adaptation of Phycomyces to growth on acetate and taking into account the kinetic and regulatory properties of both enzyme forms, we discuss the role of ICDH-1 and ICDH-2 in the control of isocitrate flux in Phycomyces.
在布氏梨形孢(Phycomyces blakesleeanus)NRRL-1555(-)中已鉴定并纯化出两种形式的NAD⁺-异柠檬酸脱氢酶,分别命名为ICDH-1和ICDH-2。这些酶形式可通过DEAE-琼脂糖凝胶柱层析分离。ICDH-2的诱导是布氏梨形孢适应以乙酸盐作为碳源生长的一种反应。两种酶形式均为388±30 kDa的八聚体,其亚基明显相同,分子量为40.5±5 kDa,但通过它们在聚丙烯酰胺凝胶电泳上的电泳迁移率可区分。ICDH-1和ICDH-2的等电点pH值分别为5.28和4.96。ICDH-2比ICDH-1对尿素变性更稳定。在pH 7.6时,ICDH-1对异柠檬酸表现出明显的S形动力学行为。然而,ICDH-1和ICDH-2对NAD⁺表现出双曲线动力学。异柠檬酸的三碱形式(I3-)及其镁络合物(MI-)是两种酶形式的真正底物。以Mg²⁺作为二价阳离子时,两种酶形式获得的动力学数据与科恩和科尔曼(1974年)[《欧洲生物化学杂志》47, 35 - 45]提出的动力学机制相符,但假定异柠檬酸活性形式的结合位点之间存在一定程度的相互作用。本报告首次描述了丝状真菌中存在两种形式的NAD⁺-异柠檬酸脱氢酶。根据布氏梨形孢适应乙酸盐生长过程中每种形式的活性水平变化,并考虑到两种酶形式的动力学和调节特性,我们讨论了ICDH-1和ICDH-2在布氏梨形孢异柠檬酸通量控制中的作用。