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异柠檬酸裂解酶催化反应中酶结合碳负离子中间体的形成:四硝基甲烷与底物的酶促反应及其对效应物、pH和金属离子的依赖性。

Formation of enzyme-bound carbanion intermediate in the isocitrate lyase-catalyzed reaction: enzymatic reaction of tetranitromethane with substrates and its dependence on effector, pH, and metal ions.

作者信息

Malhotra O P, Dwivedi U N

出版信息

Arch Biochem Biophys. 1986 Oct;250(1):238-48. doi: 10.1016/0003-9861(86)90722-8.

Abstract

Isocitrate lyase of germinating castor seed endosperm catalyzes the reactions of succinate and of isocitrate (but not of glyoxylate) with tetranitromethane (TNM), giving rise to the nitroform anion (C-(NO2)3), analogous to the reaction of TNM with carbanions (O.P. Malhotra and U.N. Dwivedi, 1984, Ind. J. Biochem. Biophys. 21, 65-67). The kinetics of this reaction have been investigated under a variety of conditions. At a fixed TNM concentration, the initial rate of reaction exhibits a hyperbolic saturation of the enzyme with isocitrate. The reaction with succinate, however, shows "negative cooperativity" in succinate saturation and the data are consistent with the existence of two sets of succinate binding sites of unequal affinity ("tight" and "loose" sites). Equal reaction rates are observed at enzyme-saturating concentrations of succinate and isocitrate. In every case, the rate of reaction is proportional to the TNM concentration. In the presence of alpha-ketoglutarate, hyperbolic saturation curves are obtained for all the substrates (TNM and succinate or TNM and isocitrate). In the presence of this effector the Km of succinate and TNM are independent of the concentration of the second substrate. On the other hand, sets of parallel straight lines are obtained in the double-reciprocal plots for the enzymatic reaction of TNM with isocitrate in the presence of alpha-ketoglutarate. Studies on the effect of pH on the isocitrate lyase-catalyzed reactions of TNM with succinate, TNM with isocitrate, and succinate with glyoxylate in the absence as well as in the presence of alpha-ketoglutarate show that the proton behaves as an uncompetitive inhibitor in all these reactions, suggesting the presence of a "masked" basic group at the enzyme site, which is protonated in the presence of substrate only. The pKa value of this group lies in the range 6.7-6.9. The enzymatic reactions of TNM with succinate and isocitrate exhibit identical Mg2+ ion dependence. From a comparison of the data on the enzymatic reactions of TNM with the corresponding results on the physiological reaction catalyzed by this enzyme, it has been suggested that an ion pair intermediate (E+ X S-, in which E, S, and S- stand for enzyme, succinate, and succinate carbanion, respectively) lies on the pathway of catalysis by isocitrate lyase.

摘要

蓖麻种子胚乳萌发时的异柠檬酸裂解酶催化琥珀酸和异柠檬酸(但不催化乙醛酸)与四硝基甲烷(TNM)的反应,生成硝仿阴离子(C-(NO2)3),这类似于TNM与碳负离子的反应(O.P.马尔霍特拉和U.N.德维韦迪,1984年,《印度生物化学与生物物理学杂志》21卷,65 - 67页)。已在多种条件下研究了该反应的动力学。在固定的TNM浓度下,反应的初始速率表现出酶对异柠檬酸的双曲线饱和。然而,与琥珀酸的反应在琥珀酸饱和时显示出“负协同性”,数据与存在两组亲和力不等的琥珀酸结合位点(“紧密”和“松散”位点)一致。在琥珀酸和异柠檬酸的酶饱和浓度下观察到相同的反应速率。在每种情况下,反应速率都与TNM浓度成正比。在α-酮戊二酸存在下,所有底物(TNM和琥珀酸或TNM和异柠檬酸)都得到双曲线饱和曲线。在这种效应物存在下,琥珀酸和TNM的Km与第二种底物的浓度无关。另一方面,在α-酮戊二酸存在下,TNM与异柠檬酸的酶促反应的双倒数图中得到了几组平行直线。对pH对异柠檬酸裂解酶催化的TNM与琥珀酸、TNM与异柠檬酸以及琥珀酸与乙醛酸反应的影响的研究表明,在α-酮戊二酸存在和不存在的情况下,质子在所有这些反应中都表现为非竞争性抑制剂,这表明酶位点存在一个“隐蔽”的碱性基团,仅在底物存在时被质子化。该基团的pKa值在6.7 - 6.9范围内。TNM与琥珀酸和异柠檬酸的酶促反应表现出相同的Mg2+离子依赖性。通过比较TNM酶促反应的数据与该酶催化的生理反应的相应结果,有人提出离子对中间体(E+ X S-,其中E、S和S-分别代表酶、琥珀酸和琥珀酸碳负离子)位于异柠檬酸裂解酶的催化途径上。

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