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鸡延胡索酸酶。II. 动力学研究。

Chicken fumarase. II. Kinetic studies.

作者信息

Reyns C, Léonis J

出版信息

Biochimie. 1975;57(2):131-8. doi: 10.1016/s0300-9084(75)80162-3.

Abstract

The catalysis of the hydration of fumarate and deshydration of L - malate by chicken fumarase was measured spectrophotometrically over a range of substrate concentrations from 4 times 10(-3) M to 8 times 10(-5) M for fumarate and from 8 times 10(-2) M to 10(-3) M for L - malate. For the forward and reverse reactions, linear Lineweaver and Burk plots were obtained. The Michaelis constants and the maximum initial velocities for both substrates were determined and the Haldane relation was found to be obeyed. The effect of pH on activity was investigated over a pH range from 5.5 to 9.0 and the data indicate the presence, in the active site, of two ionizable groups, one in the acidic form and one in the basic form. The values of the ionization constants, determined for the enzyme - substrate complexes, agree closely with the ones obtained for the porcine enzyme. The mode of action of twenty-four structural analogs on the initial velocity of the dehydration of L-malate, by chicken fumarase was examined. From these studies, two regions positively charged appear necessary for the effective binding of the carboxylates of the substrates and competitive inhibitors to the active center. Moreover, the data suggest the presence of an additional group, in the catalytic site of chicken fumarase, that stabilizes the carbon-carbon double bond common to fumarate and its structural analogs. Finally, from the comparison of the kinetic properties of the chicken and pig fumarases, it may be concluded that the catalytic mechanism of the homologous enzymes are very similar, if not identical.

摘要

通过分光光度法测定了鸡延胡索酸酶催化富马酸水合和L-苹果酸脱水反应的活性,底物浓度范围为:富马酸4×10⁻³ M至8×10⁻⁵ M,L-苹果酸8×10⁻² M至10⁻³ M。对于正向和反向反应,均得到了线性的Lineweaver和Burk图。测定了两种底物的米氏常数和最大初始速度,并发现符合Haldane关系。研究了pH在5.5至9.0范围内对活性的影响,数据表明活性位点存在两个可电离基团,一个呈酸性形式,一个呈碱性形式。针对酶-底物复合物测定的电离常数与猪酶的电离常数非常接近。研究了24种结构类似物对鸡延胡索酸酶催化L-苹果酸脱水初始速度的作用方式。从这些研究中可以看出,两个带正电荷的区域对于底物和竞争性抑制剂的羧酸盐有效结合到活性中心是必需的。此外,数据表明鸡延胡索酸酶催化位点存在一个额外的基团,该基团稳定了富马酸及其结构类似物共有的碳-碳双键。最后,通过比较鸡和猪延胡索酸酶的动力学性质,可以得出结论,同源酶的催化机制即使不完全相同,也非常相似。

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