The ternary complex of antithrombin–anhydrothrombin–heparin reveals the basis of inhibitor specificity

被引:0
作者
Alexey Dementiev
Maurice Petitou
Jean-Marc Herbert
Peter G W Gettins
机构
[1] College of Medicine,Department of Biochemistry and Molecular Genetics
[2] University of Illinois at Chicago,undefined
[3] 900 S. Ashland,undefined
[4] Sanofi-Synthélabo,undefined
[5] 185 Route d'Espagne,undefined
来源
Nature Structural & Molecular Biology | 2004年 / 11卷
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摘要
Antithrombin, the principal physiological inhibitor of the blood coagulation proteinase thrombin, requires heparin as a cofactor. We report the crystal structure of the rate-determining encounter complex formed between antithrombin, anhydrothrombin and an optimal synthetic 16-mer oligosaccharide. The antithrombin reactive center loop projects from the serpin body and adopts a canonical conformation that makes extensive backbone and side chain contacts from P5 to P6′ with thrombin's restrictive specificity pockets, including residues in the 60-loop. These contacts rationalize many earlier mutagenesis studies on thrombin specificity. The 16-mer oligosaccharide is just long enough to form the predicted bridge between the high-affinity pentasaccharide-binding site on antithrombin and the highly basic exosite 2 on thrombin, validating the design strategy for this synthetic heparin. The protein-protein and protein-oligosaccharide interactions together explain the basis for heparin activation of antithrombin as a thrombin inhibitor.
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页码:863 / 867
页数:4
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