首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >The use of deuterium isotope effects to probe the active site properties, mechanism of cytochrome p450-catalyzed reactions, and mechanisms of metabolically dependent toxicity.
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The use of deuterium isotope effects to probe the active site properties, mechanism of cytochrome p450-catalyzed reactions, and mechanisms of metabolically dependent toxicity.

机译:使用氘同位素效应来探测活性位点性质,细胞色素p450催化反应的机制以及代谢依赖性毒性的机制。

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摘要

Critical elements from studies that have led to our current understanding of the factors that cause the observed primary deuterium isotope effect, (kH/kD)obs, of most enzymatically mediated reactions to be much smaller than the "true" or intrinsic primary deuterium isotope effect, kH/kD, for the reaction are presented. This new understanding has provided a unique and powerful tool for probing the catalytic and active site properties of enzymes, particularly the cytochromes P450 (P450). Examples are presented that illustrate how the technique has been used to determine kH/kD, and properties such as the catalytic nature of the reactive oxenoid intermediate, prochiral selectivity, the chemical and enzymatic mechanisms of cytochrome P450-catalyzed reactions, and the relative active site size of different P450 isoforms. Examples are also presented of how deuterium isotope effects have been used to probe mechanisms of the formation of reactive metabolites that can cause toxic effects.
机译:研究的关键要素导致我们目前对引起大多数酶介导的反应中观察到的主要氘同位素效应(kH / kD)obs的因素的了解远小于“真实的”或固有的主要氘同位素效应给出了反应的kH / kD。这种新的理解为探测酶,尤其是细胞色素P450(P450)的催化和活性位点性质提供了独特而强大的工具。举例说明了该技术如何用于测定kH / kD的性质,以及诸如反应性类环氧化合物中间体的催化性质,前手性选择性,细胞色素P450催化反应的化学和酶促机理以及相对活性位点等性质。 P450同工型的大小。还提供了有关氘同位素效应如何用于探测可引起毒性作用的反应性代谢物形成机理的实例。

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