Proteolytic activation of purified human procarboxypeptidase U. 2000

K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
From the Department of Clinical Biochemistry, University of Antwerp, Universiteitsplein 1, B-2610, Wilrijk, Belgium.

Carboxypeptidase U (CPU, EC 3.4.17.20) is a recently described basic carboxypeptidase which circulates in plasma as an enzymatically inactive precursor procarboxypeptidase U (proCPU), also known as plasma carboxypeptidase B precursor or thrombin activatable fibrinolysis inhibitor (TAFI). The activation of the zymogen proceeds through a proteolytic cleavage at Arg-92. The active form - CPU - is able to retard the initial phase of fibrinolysis by cleaving C-terminal lysine residues exposed on fibrin partially degraded by the action of plasmin. These C-terminal lysine residues are essential for the high affinity binding of plasminogen to fibrin and the subsequent activation to plasmin. In this report, the activation of purified human proCPU was studied using trypsin and some key proteases of the coagulation and fibrinolytic cascade, i.e., kallikrein, plasmin and thrombin. The most efficient activation is obtained in the presence of thrombin in complex with thrombomodulin. After in vitro activation, CPU is unstable at 37 degrees C (T(1/2)=15 min). Its stability can be improved dramatically using lower temperatures.

UI MeSH Term Description Entries
D010450 Endopeptidases A subclass of PEPTIDE HYDROLASES that catalyze the internal cleavage of PEPTIDES or PROTEINS. Endopeptidase,Peptide Peptidohydrolases
D001777 Blood Coagulation The process of the interaction of BLOOD COAGULATION FACTORS that results in an insoluble FIBRIN clot. Blood Clotting,Coagulation, Blood,Blood Clottings,Clotting, Blood
D002268 Carboxypeptidases Enzymes that act at a free C-terminus of a polypeptide to liberate a single amino acid residue. Carboxypeptidase
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D004792 Enzyme Precursors Physiologically inactive substances that can be converted to active enzymes. Enzyme Precursor,Proenzyme,Proenzymes,Zymogen,Zymogens,Precursor, Enzyme,Precursors, Enzyme
D004795 Enzyme Stability The extent to which an enzyme retains its structural conformation or its activity when subjected to storage, isolation, and purification or various other physical or chemical manipulations, including proteolytic enzymes and heat. Enzyme Stabilities,Stabilities, Enzyme,Stability, Enzyme
D005342 Fibrinolysis The natural enzymatic dissolution of FIBRIN. Fibrinolyses
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D013917 Thrombin An enzyme formed from PROTHROMBIN that converts FIBRINOGEN to FIBRIN. Thrombase,Thrombin JMI,Thrombin-JMI,Thrombinar,Thrombostat,alpha-Thrombin,beta,gamma-Thrombin,beta-Thrombin,gamma-Thrombin,JMI, Thrombin
D014357 Trypsin A serine endopeptidase that is formed from TRYPSINOGEN in the pancreas. It is converted into its active form by ENTEROPEPTIDASE in the small intestine. It catalyzes hydrolysis of the carboxyl group of either arginine or lysine. EC 3.4.21.4. Tripcellim,Trypure,beta-Trypsin,beta Trypsin

Related Publications

K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
July 2003, Journal of thrombosis and haemostasis : JTH,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
March 2001, Thrombosis research,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
January 2006, Clinical chemistry,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
May 1995, Biochemistry,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
October 2005, Journal of thrombosis and haemostasis : JTH,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
January 2001, Thrombosis and haemostasis,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
September 2004, Clinica chimica acta; international journal of clinical chemistry,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
February 2003, Protein science : a publication of the Protein Society,
K A Schatteman, and F J Goossens, and S S Scharpé, and D F Hendriks
September 1995, Protein science : a publication of the Protein Society,
Copied contents to your clipboard!