Formation of the Antithrombin Heterodimer In Vivo and the Onset of Thrombosis
Open Access
- 15 November 1999
- journal article
- Published by American Society of Hematology in Blood
- Vol. 94 (10) , 3388-3396
- https://doi.org/10.1182/blood.v94.10.3388.422k20_3388_3396
Abstract
Antithrombin is shown to undergo a slow spontaneous conversion to its inactive latent conformation with readily discernible amounts present in plasma on incubation at 37°C for 72 hours. More rapid conversion occurs on incubation of isolated antithrombin at 41°C or 50°C, but the appearance on electrophoresis of free latent antithrombin is preceded by the formation, in reciprocal proportions, of a new slow band. This slow component is shown to be a heterodimer of active and latent antithrombin. It can be isolated as a single stable band either by incubation of antithrombin or by mixing equimolar proportions of active and latent antithrombin under the same conditions that give overnight crystallization of the active/latent antithrombin heterodimer. Similarly, equimolar addition of latent antithrombin to plasma results electrophoretically in a quantitative shift to the slower heterodimer mobility. Clinically, the presence of latent antithrombin is potentially deleterious, because its linkage to form the heterodimer results in inactivation of the otherwise normal molecule linked to the latent antithrombin. In the case of -antithrombin, because the dimer readily dissociates, there is only a 11% additive loss of activity, but with β-antithrombin the dimer appears more stable, with the additive loss of activity from the normal β component being 21%, increasing to 33% on stabilization of the dimer with heparin. This linked and selective loss of activity of β-antithrombin provides an explanation for the unexpected severity of thrombotic episodes in heterozygotes with conformationally unstable antithrombins.Keywords
This publication has 29 references indexed in Scilit:
- Antithrombins Wibble and Wobble (T85M/K): Archetypal Conformational Diseases With In Vivo Latent-Transition, Thrombosis, and Heparin ActivationBlood, 1998
- The anticoagulant activation of antithrombin by heparinProceedings of the National Academy of Sciences, 1997
- Preparative Induction and Characterization of L-Antithrombin: A Structural Homologue of Latent Plasminogen Activator Inhibitor-1Biochemistry, 1997
- Thromboembolic disease due to thermolabile conformational changes of antithrombin Rouen-VI (187 Asn-->Asp)Journal of Clinical Investigation, 1994
- Biological implications of a 3 å structure of dimeric antithrombinStructure, 1994
- The intact and cleaved human antithrombin III complex as a model for serpin–proteinase interactionsNature Structural & Molecular Biology, 1994
- [30] Kinetic characterization of heparin-catalyzed and uncatalyzed inhibition of blood coagulation proteinases by antithrombinPublished by Elsevier ,1993
- Structural basis of latency in plasminogen activator inhibitor-1Nature, 1992
- A simple two-step procedure for the isolation of antithrombin III from biological fluidsThrombosis Research, 1981
- The Size and Shape of Human and Bovine Antithrombin IIIEuropean Journal of Biochemistry, 1977