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Publication : Murine thrombin lacks Na+ activation but retains high catalytic activity.

First Author  Bush LA Year  2006
Journal  J Biol Chem Volume  281
Issue  11 Pages  7183-8
PubMed ID  16428384 Mgi Jnum  J:110555
Mgi Id  MGI:3640627 Doi  10.1074/jbc.M512082200
Citation  Bush LA, et al. (2006) Murine thrombin lacks Na+ activation but retains high catalytic activity. J Biol Chem 281(11):7183-8
abstractText  Human thrombin utilizes Na+ as a driving force for the cleavage of substrates mediating its procoagulant, prothrombotic, and signaling functions. Murine thrombin has Asp-222 in the Na+ binding site of the human enzyme replaced by Lys. The charge reversal substitution abrogates Na+ activation, which is partially restored with the K222D mutation, and ensures high activity even in the absence of Na+. This property makes the murine enzyme more resistant to the effect of mutations that destabilize Na+ binding and shift thrombin to its anticoagulant slow form. Compared with the human enzyme, murine thrombin cleaves fibrinogen and protein C with similar k(cat)/K(m) values but activates PAR1 and PAR4 with k(cat)/K(m) values 4- and 26-fold higher, respectively. The significantly higher specificity constant toward PAR4 accounts for the dominant role of this receptor in platelet activation in the mouse. Murine thrombin can also cleave substrates carrying Phe at P1, which potentially broadens the repertoire of molecular targets available to the enzyme in vivo.
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