Three-dimensional Model of Coagulation Factor Va Bound to Activated Protein C
- 1 January 2000
- journal article
- review article
- Published by Georg Thieme Verlag KG in Thrombosis and Haemostasis
- Vol. 84 (11) , 849-857
- https://doi.org/10.1055/s-0037-1614127
Abstract
A complete molecular model of blood coagulation factor Va (FVa) bound to anticoagulant activated protein C (APC) and to a phospholipid membrane was constructed. The three homologous A domains and the two homologous C domains of FVA were modeled based on the X-ray crystallographic structures of ceruloplasmin and C2 domain of factor V, respectively. The final arrangement of the five domains in the complete FVa model bound to a membrane incorporated extensive published experimental data. FVa binds the phospholipid membrane through its C2 domain while the A-domain trimer is located from 40 through 100 Å above the membrane plane. From our model we infer a probable role for metal ions at the interface between FVa light and heavy chains, provide an explanation for the slower APC cleavage at Arg306 relative to Arg506, and predict specific interactions between positively and negatively charged exosites in APC and FVa, respectively.Keywords
Funding Information
- National Institutes of Health (HL21544, GM48495, HL07695 and HL52246)
- National Science Foundation (BIR9631436)
- Protein Data Bank (IFV4)
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