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天然及化学修饰的猪心三磷酸吡啶核苷酸依赖性异柠檬酸脱氢酶与辅酶的结合

Coenzyme binding by native and chemically modified pig heart triphosphopyridine nucleotide dependent isocitrate dehydrogenase.

作者信息

Ehrlich R S, Colman R F

出版信息

Biochemistry. 1975 Nov 4;14(22):5008-16. doi: 10.1021/bi00693a035.

Abstract

The binding of TPNH to native and chemically modified pig heart TPN-dependent isocitrate dehydrogenase was studied by the techniques of ultrafiltration and fluorescence enhancement. A single site (per peptide chain) was found for TPNH with a dissociation constant (KD = 1.45 muM) that is quantitatively comparable to the Michaelis constant. The oxidized coenzyme, TPN+, weakens the binding of TPNH. The substrate manganous isocitrate also inhibits the binding of TPNH and, reciprocally, TPNH inhibits the binding of manganous isocitrate, suggesting that binding to the reduced coenzyme and substrate sites is mutually exclusive. Ultrafiltration experiments with carbonyl [14C]TPN+ revealed the existence of two sites with a dissociation constant (49 muM) more than ten times higher than the Michaelis constant. This observation excludes a random mechanism for isocitrate dehydrogenase or a sequential mechanism in which TPN+ binds first. Four chemically modified isocitrate dehydrogenases have been prepared: enzyme inactivated by reaction of a single methionyl residue with iodoacetate, by modification of a glutamyl residue by glycinamide (in the presence of a water soluble carbodiimide), by reaction of four cysteines successively with 5,5'-dithiobis(2-nitrobenzoic acid) and potassium cyanide, or by addition of two cysteine residues to N-ethylmaleimide. These enzymes were tested for their ability to bind TPN+, TPNH, and manganous isocitrate. In the cases of the cysteinyl and glutamyl-modified enzymes, inactivation appears to be due primarily to loss of the ability to bind the substrate manganous isocitrate. In constrast, the methionyl residue may participate in the coenzyme binding site or, more likely, may be involved in a step in catalysis subsequent to binding.

摘要

通过超滤和荧光增强技术研究了三磷酸吡啶核苷酸(TPNH)与天然及化学修饰的猪心三磷酸吡啶核苷酸依赖性异柠檬酸脱氢酶的结合情况。发现每个肽链上有一个TPNH结合位点,其解离常数(KD = 1.45 μM)在数量上与米氏常数相当。氧化型辅酶三磷酸吡啶核苷酸(TPN+)会削弱TPNH的结合。底物锰异柠檬酸也会抑制TPNH的结合,反之,TPNH也会抑制锰异柠檬酸的结合,这表明与还原型辅酶和底物位点的结合是相互排斥的。用羰基[14C]TPN+进行的超滤实验表明存在两个位点,其解离常数(49 μM)比米氏常数高十多倍。这一观察结果排除了异柠檬酸脱氢酶的随机机制或TPN+先结合的顺序机制。制备了四种化学修饰的异柠檬酸脱氢酶:通过单个甲硫氨酰残基与碘乙酸反应使酶失活;通过甘氨酰胺修饰谷氨酰残基(在水溶性碳二亚胺存在下);通过四个半胱氨酸依次与5,5'-二硫代双(2-硝基苯甲酸)和氰化钾反应;或通过向N-乙基马来酰亚胺添加两个半胱氨酸残基。测试了这些酶结合TPN+、TPNH和锰异柠檬酸的能力。在半胱氨酰和谷氨酰修饰的酶的情况下,失活似乎主要是由于失去了结合底物锰异柠檬酸的能力。相比之下,甲硫氨酰残基可能参与辅酶结合位点,或者更有可能参与结合后催化过程中的一个步骤。

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