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首页> 外文期刊>Current Protein and Peptide Science >Cryoenzymology: Enzyme Action in Slow Motion
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Cryoenzymology: Enzyme Action in Slow Motion

机译:冷冻形态学:慢动作的酶作用

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摘要

Knowledge of the existence and structure of intermediates on the reaction pathway is necessary before specific details of the mechanism may be successfully resolved. However, enzymatic catalysis is an extremely fast process. This rapidity of enzyme-catalyzed reactions and the short life times of intermediates represent a major problem in studying the dynamic processes which occur during catalysis, as they prevent the accumulation of intermediates under normal conditions for concentrations and time periods required by most high-resolution structural methods. Therefore, a method that would utilize specific substrates but would permit the detection and characterization of intermediates was highly desired. As one of the approaches to overcome this problem the use of cryoenzymology to allow the accumulation and stabilization of intermediates at very low temperatures was proposed. This review describes the contribution of Prof. Anthony L. Fink to cryoenzymology and shows how his work shaped this exciting area.
机译:必须先了解反应路径上中间体的存在和结构,然后才能成功解决该机理的具体细节。然而,酶催化是非常快速的过程。酶催化反应的这种快速性和中间体的短寿命是研究催化过程中发生的动态过程的主要问题,因为它们阻止了中间体在大多数高分辨率结构所要求的浓度和时间的正常条件下积累。方法。因此,非常需要一种利用特定底物但允许对中间体进行检测和表征的方法。作为克服该问题的方法之一,提出了使用冷冻流变学以允许中间体在非常低的温度下的积累和稳定化。这篇评论描述了Anthony L. Fink教授对冷冻言语学的贡献,并展示了他的工作如何塑造了这个激动人心的领域。

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