首页> 美国卫生研究院文献>Biochemical Journal >Equilibrium binding of coenzymes and substrates to nicotinamide-adenine dinucleotide phosphate-linked isocitrate dehydrogenase from bovine heart mitochondria.
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Equilibrium binding of coenzymes and substrates to nicotinamide-adenine dinucleotide phosphate-linked isocitrate dehydrogenase from bovine heart mitochondria.

机译:辅酶和底物与来自牛心脏线粒体的烟酰胺-腺嘌呤二核苷酸磷酸酯化的异柠檬酸脱氢酶的平衡结合。

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摘要

1. The stoicheiometries and affinities of ligand binding to isocitrate dehydrogenase were studied at pH 7.0, mainly by measuring changes in NADPH and protein fluorescence. 2. The affinity of the enzyme for NADPH is about 100-fold greater than it is for NADP+ in various buffer/salt solutions, and the affinities for both coenzymes are decreased by Mg2+, phosphate and increase in ionic strength. 3. The maximum binding capacity of the dimeric enzyme for NADPH, from coenzyme fluorescence and protein-fluorescence measurements, and also for NADP+, by ultrafiltration, is 2 mol/mol of enzyme. Protein-fluorescence titrations of the enzyme with NADP+ are apparently inconsistent with this conclusion, indicating that the increase in protein fluorescence caused by NADP+ binding is not proportional to fractional saturation of the binding sites. 4. Changes in protein fluorescence caused by changes in ionic strength and by the binding of substrates, Mg2+ or NADP+ (but not NADPH) are relatively slow, suggesting conformation changes. 5. In the presence of Mg2+, the enzyme binds isocitrate very strongly, and 2-oxoglutarate rather weakly. 6. Evidence is presented for the formation of an abortive complex of enzyme-Mg2+-isocitrate-NADPH in which isocitrate and NADPH are bound much more weakly than in their complexes with enzyme and Mg2+ alone. 7. The results are discussed in relation to the interpretation of the kinetic properties of the enzyme and its behaviour in the mitochondrion.
机译:1.主要通过测量NADPH和蛋白质荧光的变化,研究了在pH 7.0时配体与异柠檬酸脱氢酶结合的化学计量学和亲和力。 2.在各种缓冲液/盐溶液中,酶对NADPH的亲和力比对NADP +高约100倍,并且Mg2 +,磷酸根和离子强度对两种辅酶的亲和力均降低。 3.二聚体酶对NADPH的最大结合能力(通过辅酶荧光和蛋白质荧光测量)以及通过超滤对NADP +的最大结合能力为2 mol / mol酶。用NADP +进行酶的蛋白质荧光滴定显然与此结论不一致,表明由NADP +结合引起的蛋白质荧光增加与结合位点的饱和度不成比例。 4.由离子强度的变化和底物,Mg2 +或NADP +(而不是NADPH)的结合引起的蛋白质荧光变化相对较慢,表明构象变化。 5.在存在Mg2 +的情况下,该酶与异柠檬酸的结合非常牢固,而与2-氧戊二酸的结合则非常弱。 6.提供了形成流产的酶-Mg 2+-异柠檬酸-NADPH复合物的证据,其中与单独的酶和Mg 2+的复合物相比,异柠檬酸和NADPH的结合弱得多。 7.讨论了有关酶动力学特性及其在线粒体中行为的解释的结果。

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