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利用三元复合物研究乳酸脱氢酶催化过程中的电离和异构化。

The use of ternary complexes to study ionizations and isomerizations during catalysis by lactate dehydrogenase.

作者信息

Holbrook J J, Stinson R A

出版信息

Biochem J. 1973 Apr;131(4):739-48. doi: 10.1042/bj1310739.

Abstract
  1. The binding of oxamate to pig heart and pig muscle isoenzymes of lactate dehydrogenase in the presence of NADH was studied by fluorescence titration. The dissociation constant of oxamate from the heart enzyme complex is 3mum and from the muscle isoenzyme 25mum at pH5. These values quantitatively increase with pH as predicted if oxamate can bind only to the enzyme-NADH complex if a group with pK6.9 is protonated. There are four non-interacting oxamate-binding sites per tetramer. 2. o-Nitrophenylpyruvate is a poor substrate for both isoenzymes but has a reasonable affinity to the heart isoenzyme. Initially, it forms an enzyme-NADH-substrate complex, which can be detected either by protein-fluorescence quenching or by NADH-fluorescence quenching. The pH-dependence of the dissociation constant of nitrophenylpyruvate also shows that this ternary complex can only form if a group with pK6.8 is protonated. Taken with the results of chemical-modification experiments, these results allow the pK of 6.8 to be assigned to a system probably involving the imidazole side chain of histidine-195. Formation of a ternary complex from a binary one at pH8 is predicted to result in a proton being taken up from solution. 3. Isotope-effect studies with NADH and its deuterium analogue show that the rapidly formed ternary complex with o-nitrophenylpyruvate slowly isomerizes to give an active ternary complex, which then rapidly decomposes to NAD(+). The isomerization is pH-independent, and it is suggested that histidine-195 is still protonated in the activated ternary complex, which is present before hydride transfer. 4. All four subunits of the enzyme are kinetically equivalent with respect to the oxidation of bound NADH by o-nitrophenylpyruvate. 5. A partial mechanism for the enzyme is described which emphasizes the isomerizations and ionizations involved in forming the reduced ternary complex at pH6 and 8.
摘要
  1. 通过荧光滴定研究了草氨酸盐在NADH存在下与猪心脏和猪肌肉乳酸脱氢酶同工酶的结合。在pH5时,草氨酸盐从心脏酶复合物的解离常数为3μM,从肌肉同工酶的解离常数为25μM。如果草氨酸盐仅在pK6.9的基团质子化时才能与酶 - NADH复合物结合,那么这些值会随着pH值的升高而定量增加。每个四聚体有四个非相互作用的草氨酸盐结合位点。2. 邻硝基苯丙酮酸对两种同工酶来说都是较差的底物,但对心脏同工酶有一定亲和力。最初,它形成酶 - NADH - 底物复合物,这可以通过蛋白质荧光猝灭或NADH荧光猝灭来检测。邻硝基苯丙酮酸解离常数的pH依赖性也表明,只有当pK6.8的基团质子化时,这种三元复合物才能形成。结合化学修饰实验的结果,这些结果使得6.8的pK值可能归因于一个可能涉及组氨酸 - 195咪唑侧链的系统。预计在pH8时从二元复合物形成三元复合物会导致从溶液中吸收一个质子。3. 用NADH及其氘类似物进行的同位素效应研究表明,与邻硝基苯丙酮酸快速形成的三元复合物会缓慢异构化,生成一种活性三元复合物,然后迅速分解为NAD(+)。异构化与pH无关,并且表明组氨酸 - 195在氢化物转移之前存在的活化三元复合物中仍然是质子化的。4. 就邻硝基苯丙酮酸氧化结合的NADH而言,该酶的所有四个亚基在动力学上是等效的。5. 描述了该酶的一个部分机制,该机制强调了在pH6和8时形成还原三元复合物所涉及的异构化和电离过程。

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Ionic properties of an essential histidine residue in pig heart lactate dehydrogenase.
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Equilibrium binding of nicotinamide nucleotides to lactate dehydrogenases.
Biochem J. 1973 Apr;131(4):719-28. doi: 10.1042/bj1310719.
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Transient-kinetic studies of pig muscle lactate dehydrogenase.
Biochem J. 1971 Jan;121(2):235-40. doi: 10.1042/bj1210235.
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Transients in the reactions of liver alcohol dehydrogenase.
Biochemistry. 1970 Nov 24;9(24):4655-9. doi: 10.1021/bi00826a006.

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