Mobile reactive centre of serpins and the control of thrombosis
- 10 October 1991
- journal article
- Published by Springer Nature in Nature
- Vol. 353 (6344) , 576-578
- https://doi.org/10.1038/353576a0
Abstract
Two protease inhibitors in human plasma play a key part in the control of thrombosis: antithrombin inhibits coagulation and the plasminogen activator inhibitor PAI-1 inhibits fibrinolysis, the dissolving of clots. Both inhibitors are members of the serpin family and both exist in the plasma in latent or inactive forms. We show here that the reactive centre of the serpins can adopt varying conformations and that mobility of the reactive centre is necessary for the function of antithrombin and its binding and activation by heparin; the identification of a new locked conformation explains the latent inactive state of PAI-1. This ability to vary conformation not only allows the modulation of inhibitory activity but also protects the circulating inhibitor against proteolytic attack. Together these findings explain the retention by the serpins of a large and unconstrained reactive centre as compared to the small fixed peptide loop of other families of serine protease inhibitors.Keywords
This publication has 18 references indexed in Scilit:
- Site‐directed mutagenesis of alanine‐382 of human antithrombin IIIFEBS Letters, 1991
- Structural transition of α1‐antitrypsin by a peptide sequentially similar to β‐strand s4AEuropean Journal of Biochemistry, 1990
- Crystal structure of ovalbumin as a model for the reactive centre of serpinsNature, 1990
- Implications of the three-dimensional structure of .alpha.1-antitrypsin for structure and function of serpinsBiochemistry, 1989
- Antithrombin Cambridge, 384 Ala to Pro: A new variant identified using the polymerase chain reactionFEBS Letters, 1989
- Ovalbumin and angiotensinogen lack serpin S–R conformational changeBiochemical Journal, 1989
- Antithrombin-III-Hamilton: a gene with a point mutation (guanine to adenine) in codon 382 causing impaired serine protease reactivityBlood, 1988
- The high‐resolution X‐ray crystal structure of the complex formed between subtilisin Carlsberg and eglin c, an elastase inhibitor from the leech Hirudo medicinalisEuropean Journal of Biochemistry, 1987
- Amino acid epimerization in planktonic foraminifera suggests slow sedimentation rates for Alpha Ridge, Arctic OceanNature, 1986
- Identification of the cleavage sites resulting from enzymic inactivation of human antithrombin III by Crotalus adamanteus proteinase II in the presence and absence of heparinBiochemistry, 1981