Models of the serine protease domain of the human antithrombotic plasma factor activated protein C and its zymogen
Open Access
- 1 April 1994
- journal article
- research article
- Published by Wiley in Protein Science
- Vol. 3 (4) , 588-599
- https://doi.org/10.1002/pro.5560030407
Abstract
Three-dimensional structural analysis of physiologically important serine proteases is useful in identifying functional features relevant to the expression of their activities and specificities. The human serine protease anticoagulant protein C is currently the object of many genetic site-directed mutagenesis studies. Analyzing relationships between its structure and function and between naturally occurring mutations and their corresponding clinical phenotypes would be greatly assisted by a 3-dimensional structure of the enzyme. To this end, molecular models of the protease domain of protein C have been produced using computational techniques based on known crystal structures of homologous enzymes and on protein C functional information. The resultant models corresponding to different stages along the processing pathway of protein C were analyzed for structural and electrostatic differences arising during the process of protein C maturation and activation. The most satisfactory models included a calcium ion bound to residues homologous to those that ligate calcium in the trypsin structure. Inspection of the surface features of the models allowed identification of residues putatively involved in specific functional interactions. In particular, analysis of the electrostatic potential surface of the model delineated a positively charged region likely to represent a novel substrate recognition exosite. To assist with future mutational studies, binding of an octapeptide representing a protein C cleavage site of its substrate factor Va to the enzyme's active site region was modeled and analyzed.Keywords
This publication has 67 references indexed in Scilit:
- Tertiary templates for proteins: Use of packing criteria in the enumeration of allowed sequences for different structural classesPublished by Elsevier ,2005
- Three-dimensional structure of the complexes between bovine chymotrypsinogen A and two recombinant variants of human pancreatic secretory trypsin inhibitor (Kazal-type)Journal of Molecular Biology, 1991
- Structure of myohemerythrin in the azidomet state at resolutionJournal of Molecular Biology, 1987
- Selective alteration of substrate specificity by replacement of aspartic acid-189 with lysine in the binding pocket of trypsinBiochemistry, 1987
- Bovine chymotrypsinogen AJournal of Molecular Biology, 1985
- Structure of α-chymotrypsin refined at 1.68 Å resolutionJournal of Molecular Biology, 1985
- Homozygous Protein C Deficiency Manifested by Massive Venous Thrombosis in the NewbornNew England Journal of Medicine, 1984
- The protein data bank: A computer-based archival file for macromolecular structuresJournal of Molecular Biology, 1977
- Activation of chymotrypsinogen-A: An hypothesis based upon comparison of the crystal structures of chymotrypsinogen-A and α-chymotrypsinJournal of Molecular Biology, 1973
- Covalent structure of bovine trypsinogen. The position of the remaining amidesBiochemical and Biophysical Research Communications, 1966