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Crystal structures of the membrane-binding C2 domain of human coagulation factor V

Author

Listed:
  • Sandra Macedo-Ribeiro

    (Max-Planck-Institut für Biochemie)

  • Wolfram Bode

    (Max-Planck-Institut für Biochemie)

  • Robert Huber

    (Max-Planck-Institut für Biochemie)

  • Mary Ann Quinn-Allen

    (Duke University Medical Center)

  • Suhng Wook Kim

    (Duke University Medical Center)

  • Thomas L. Ortel

    (Duke University Medical Center)

  • Gleb P. Bourenkov

    (Max-Planck Research Unit for Structural Molecular Biology, Protein Dynamics Group, MPG-ASMB c/o DESY)

  • Hans D. Bartunik

    (Max-Planck Research Unit for Structural Molecular Biology, Protein Dynamics Group, MPG-ASMB c/o DESY)

  • Milton T. Stubbs

    (Institut für Pharmazeutische Chemie, Philipps Universität Marburg)

  • William H. Kane

    (Duke University Medical Center)

  • Pablo Fuentes-Prior

    (Max-Planck-Institut für Biochemie)

Abstract

Rapid and controlled clot formation is achieved through sequential activation of circulating serine proteinase precursors on phosphatidylserine-rich procoagulant membranes of activated platelets and endothelial cells1. The homologous complexes Xase and prothrombinase, each consisting of an active proteinase and a non-enzymatic cofactor, perform critical steps within this coagulation cascade. The activated cofactors VIIIa and Va, highly specific for their cognate proteinases, are each derived from precursors with the same A1-A2-B-A3-C1-C2 architecture2. Membrane binding is mediated by the C2 domains of both cofactors. Here we report two crystal structures of the C2 domain of human factor Va. The conserved β-barrel framework provides a scaffold for three protruding loops, one of which adopts markedly different conformations in the two crystal forms. We propose a mechanism of calcium-independent, stereospecific binding of factors Va and VIIIa to phospholipid membranes3,4, on the basis of (1) immersion of hydrophobic residues at the apices of these loops in the apolar membrane core; (2) specific interactions with phosphatidylserine head groups in the groove enclosed by these loops; and (3) favourable electrostatic contacts of basic side chains with negatively charged membrane phosphate groups.

Suggested Citation

  • Sandra Macedo-Ribeiro & Wolfram Bode & Robert Huber & Mary Ann Quinn-Allen & Suhng Wook Kim & Thomas L. Ortel & Gleb P. Bourenkov & Hans D. Bartunik & Milton T. Stubbs & William H. Kane & Pablo Fuente, 1999. "Crystal structures of the membrane-binding C2 domain of human coagulation factor V," Nature, Nature, vol. 402(6760), pages 434-439, November.
  • Handle: RePEc:nat:nature:v:402:y:1999:i:6760:d:10.1038_46594
    DOI: 10.1038/46594
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