Molecular mechanisms of thrombin function

被引:172
作者
DiCera, E
Dang, QD
Ayala, YM
机构
[1] Dept. Biochem. and Molec. Biophys., Washington Univ. School of Medicine, Box 8231, St. Louis
关键词
allosteric enzymes; blood coagulation; complement; molecular evolution; monovalent cations; protein engineering; serine proteases; thrombin;
D O I
10.1007/s000180050091
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The discovery of thrombin as a Na+-dependent allosteric enzyme has revealed a novel strategy for regulating protease activity and specificity. The allosteric nature of this enzyme influences all its physiologically important interactions and rationalizes a large body of structural and functional information. For the first time, a coherent mechanistic framework is available for understanding how thrombin interacts with fibrinogen, thrombomodulin and protein C, and how Na+ binding influences the specificity sites of the enzyme. This information can be used for engineering thrombin mutants with selective specificity towards protein C and for the rational design of potent active site inhibitors. Thrombin also serves as a paradigm for allosteric proteases. Elucidation of the molecular basis of the Na+-dependent allosteric regulation of catalytic activity, based on the residue present at position 225, provides unprecedented insights into the function and evolution of serine proteases. This mechanism represents one of the simplest and most important structure-function correlations ever reported for enzymes in general. All vitamin K-dependent proteases and some complement factors are subject to the Na+-dependent regulation discovered for thrombin. Nai-is therefore a key factor in the activation of zymogens in the coagulation and complement systems.
引用
收藏
页码:701 / 730
页数:30
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