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关于肝脏乙醇脱氢酶、NADH和咪唑体系的化学弛豫研究。

Chemical relaxation studies on the system liver alcohol dehydrogenase, NADH and imidazole.

作者信息

Czerlinski G H, Wagner M, Erickson J O, Theorell H

出版信息

Acta Chem Scand B. 1975;29(8):797-810. doi: 10.3891/acta.chem.scand.29b-0797.

Abstract

Several years ago, Theorell and Czerlinski conducted experiments on the system of horse liver alcohol dehydrogenase, reduced nicotinamide adenine dinucleotide and imidazole, using the first version of the temperature jump apparatus with detection of changes in fluorescence. These early experiments were repeated with improved instrumentation and confirmed the early experiments in general terms. However, the improved detection system allowed to measure a slight concentration dependence of the relaxation time of around 3 ms. Furthermore, the chemical relaxation time was smaller than the one determined earlier (by factor 2). The data were evaluated much more rigorously than before, allowing an appropriate interpretation of the results. The observed relaxation time is largely due to rate constants in an interconversion of ternary complexes, which are faster than three (of the four) dissociation rate constants, determined previously by Theorell and McKinley-McKee.1,2 This fact contributed to earlier difficulties of finding any concentration dependence. However, the binding of imidazole to the binary enzyme-coenzyme complex can be made to couple kinetically into the interconversion rate of the two ternary complexes. The observed signal derives largely from the ternary complex(es). A substantial fluorescence signal change is associated with the observed relaxation process, suggesting a relocation of the imidazole in reference to the nicotinamide moiety of the bound coenzyme. Nine models are considered with two types of coupling of pre-equilibria (none-all). Quantitative evaluations favor the model with two ternary complexes connected by an interconversion outside the four-step (bimolecular) cycle. The ternary complex outside the cycle has much higher fluorescence yield than the one inside. The interconversion equilibrium is near unity for imidazole. If it would be shifted very much to the side of the "dead-end" complex (as in isobutyramide?!), stimulating action could not take place.

摘要

几年前,西奥雷尔和切尔林斯基使用带有荧光变化检测功能的第一代温度跃升装置,对马肝醇脱氢酶、还原型烟酰胺腺嘌呤二核苷酸和咪唑系统进行了实验。这些早期实验在仪器改进后被重复进行,总体上证实了早期实验结果。然而,改进后的检测系统能够测量出弛豫时间约3毫秒的轻微浓度依赖性。此外,化学弛豫时间比之前测定的要小(小2倍)。对数据的评估比以前更加严格,从而能够对结果进行恰当的解释。观察到的弛豫时间很大程度上归因于三元复合物相互转化中的速率常数,这些速率常数比西奥雷尔和麦金利 - 麦基之前测定的四个解离速率常数中的三个要快。这一事实导致了早期在发现任何浓度依赖性方面的困难。然而,咪唑与二元酶 - 辅酶复合物的结合可以在动力学上与两种三元复合物的相互转化速率相耦合。观察到的信号主要来自三元复合物。观察到的弛豫过程伴随着显著的荧光信号变化,这表明咪唑相对于结合辅酶的烟酰胺部分发生了重新定位。考虑了九种模型,其中预平衡有两种耦合类型(无 - 全部)。定量评估支持由四步(双分子)循环之外的相互转化连接的两种三元复合物的模型。循环外的三元复合物的荧光产率比循环内的要高得多。咪唑的相互转化平衡接近1。如果它非常偏向“终产物”复合物一侧(如异丁酰胺的情况?!),则不会发生刺激作用。

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