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Thrombosis Research|September 15, 1985
Enzymatic inactivation of heparin cofactor II by a proteinase (proteinase-1) isolated from Echis carinatus venomM J Griffith, J A Tyndall, C M Noyes, et al.Archives of Biochemistry and Biophysics|August 1, 1985
Effect of divalent cations on the limited proteolysis of prothrombin by thrombinF C Church, R L Lundblad, C M Noyes, et al.The Journal of Biological Chemistry|March 15, 1996
Cellular internalization and degradation of antithrombin III-thrombin, heparin cofactor II-thrombin, and alpha 1-antitrypsin-trypsin complexes is mediated by the low density lipoprotein receptor-related proteinM Z Kounnas, F C Church, W S Argraves, et al.Journal of Thrombosis and Haemostasis : JTH|August 1, 2007
Serpins in thrombosis, hemostasis and fibrinolysisJ C Rau, L M Beaulieu, J A Huntington, et al.The Journal of Biological Chemistry|October 27, 1995
Protein C inhibitor is a potent inhibitor of the thrombin-thrombomodulin complexA R Rezaie, S T Cooper, F C Church, et al.Biochemical and Biophysical Research Communications|October 14, 1987
Carboxylate polyanions accelerate inhibition of thrombin by heparin cofactor IIF C Church, R E Treanor, G B Sherrill, et al.Biochemistry|November 19, 1985
Structural evidence for leucine at the reactive site of heparin cofactor IIM J Griffith, C M Noyes, J A Tyndall, et al.FEBS Letters|November 9, 2000
Effect of oligodeoxynucleotide thrombin aptamer on thrombin inhibition by heparin cofactor II and antithrombinC A Holland, A T Henry, H C Whinna, et al.The Journal of Biological Chemistry|November 18, 1994
Role of the H helix in heparin binding to protein C inhibitorR A Shirk, M G Elisen, J C Meijers, et al.International Journal of Peptide and Protein Research|March 1, 1995
Engineering of five 88-residue receptor-adhesive modular proteins containing a parallel alpha-helical coiled coil and two RGD ligand sitesC A Slate, S C Weninger, F C Church, et al.Pageof 8