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通过生物信息学数据的大规模分析揭示的解释酶的分子量与活化能之间关系的理论模型。

Theoretical model explaining the relationship between the molecular mass and the activation energy of the enzyme revealed by a large-scale analysis of bioinformatics data.

作者信息

Pawlowski Piotr H, Zielenkiewicz Piotr

机构信息

Institute of Biochemistry and Biophysics of the Polish Academy of Sciences, Warszawa, Poland.

出版信息

Acta Biochim Pol. 2013;60(2):239-47. Epub 2013 Jun 17.

PMID:23772424
Abstract

A general dependence of the enzyme catalytic rate on its mass was revealed when a statistical analysis of 17065 records from the EMP database was performed. The estimated activation energy of the catalytic process decreases asymptotically with the enzyme molecular mass increase. The proposed theoretical model postulates the existence of an intermediate complex of the enzyme and the departing product. It allows for the explanation of the discovered mass-energy relationship, as an effect of the global enzyme-product interactions during complex dissociation. Fitted parameters of the model seem to be in agreement with those widely accepted for the van der Waals energy of molecular interactions. Their values also agree with the picture of the hydrogen bonding in the catalytic process and suggest that surface walk can be the favorable way of the product departure.

摘要

当对EMP数据库中的17065条记录进行统计分析时,发现了酶催化速率对其质量的一般依赖性。催化过程的估计活化能随着酶分子量的增加而渐近降低。所提出的理论模型假定存在酶与离去产物的中间复合物。它能够解释所发现的质量-能量关系,这是复合物解离过程中全局酶-产物相互作用的结果。该模型的拟合参数似乎与分子相互作用的范德华能广泛接受的参数一致。它们的值也与催化过程中的氢键情况相符,并表明表面游走可能是产物离去的有利方式。

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