Membrane binding and anticoagulant properties of protein S natural variants.

Marcello Baroni, Giulia Pavani, Diego Marescotti, Tahar Kaabache, Delphine Borgel, Sophie Gandrille, Giovanna Marchetti, Cristina Legnani, Armando D'Angelo, Mirko Pinotti, Francesco Bernardi
Author Information
  1. Marcello Baroni: Department of Biochemistry and Molecular Biology, ICSI, University of Ferrara, Ferrara, Italy. brnmcl@unife.it

Abstract

INTRODUCTION: Protein S (PS) is a vitamin K-dependent plasma glycoprotein with a key role in the control of coagulation pathway on phospholipid membranes. We compared anticoagulant and membrane binding properties of PS altered by natural mutations (N217S, DelI203D204) affecting the epidermal growth factor like-domain 4 (EGF4) and causing PS deficiency.
MATERIALS AND METHODS: Binding of recombinant, immunopurified PS (rPS) to several conformation-specific antibodies, to C4BP and to phospholipid liposomes was investigated by ELISA. PS binding to cells was analysed by flow cytometry. PS inhibitory activities were studied in plasma and purified systems.
RESULTS AND CONCLUSIONS: Conformational changes produced by mutations were revealed by mapping with calcium-dependent antibodies. The immunopurified recombinant mutants (rPS) showed at 200-800 nM concentration reduced inhibition of coagulation (rPS217S, 10.2-17.3%; rPSDelI203D204, 5.8-8.9% of rPSwt) in FXa 1-stage clotting assay with APC. In thrombin generation assays the inhibition of ETP was reduced to 51.6% (rPS217S) and 24.1% (rPSDelI203D204) of rPSwt. A slightly shortened lag time (minutes) was also observed (rPS217S, 2.58; rPSDelI203D204, 2.33; rPSwt, 3.17; PS deficient plasma, 2.17). In flow cytometry analysis both mutants efficiently bound apoptotic cells in adhesion or in suspension. The affinity for phosphatidylserine-rich vesicles (apparent Kd: rPSwt 27.7+/-1.6 nM, rPS217S 146.0+/-16.1 nM and rPSDelI203D204 234.1+/-28.1 nM) was substantially increased by membrane oxidation (10.9+/-0.6, 38.2+/-3.5 and 81.4+/-6.0 nM), which resulted in a virtually normal binding capacity of mutants at physiological PS concentration. These properties help to define the molecular bases of PS deficiency, and provide further elements for PS-mediated bridging of coagulation and inflammation.

MeSH Term

Animals
Anticoagulants
Binding Sites
Blood Coagulation
Cell Line
Cell Line, Transformed
Cell Membrane
Cell Transformation, Viral
Complement C4b-Binding Protein
Cricetinae
Fibroblasts
Herpesvirus 4, Human
Histocompatibility Antigens
Humans
Kidney
Liposomes
Membranes
Phospholipids
Protein Binding
Protein C
Protein Conformation
Protein S
Protein S Deficiency
Recombinant Proteins
Simian virus 40

Chemicals

Anticoagulants
C4BPA protein, human
Complement C4b-Binding Protein
Histocompatibility Antigens
Liposomes
Phospholipids
Protein C
Protein S
Recombinant Proteins

Word Cloud

Created with Highcharts 10.0.0PSnMbindingrPS217SrPSDelI203D204rPSwtplasmacoagulationpropertiesmutants2SphospholipidanticoagulantmembranenaturalmutationsdeficiencyANDrecombinantimmunopurifiedrPSantibodiescellsflowcytometryconcentrationreducedinhibition1051761INTRODUCTION:ProteinvitaminK-dependentglycoproteinkeyrolecontrolpathwaymembranescomparedalteredN217SDelI203D204affectingepidermalgrowthfactorlike-domain4EGF4causingMATERIALSMETHODS:Bindingseveralconformation-specificC4BPliposomesinvestigatedELISAanalysedinhibitoryactivitiesstudiedpurifiedsystemsRESULTSCONCLUSIONS:Conformationalchangesproducedrevealedmappingcalcium-dependentshowed200-8002-173%8-89%FXa1-stageclottingassayAPCthrombingenerationassaysETP516%241%slightlyshortenedlagtimeminutesalsoobserved58333deficientanalysisefficientlyboundapoptoticadhesionsuspensionaffinityphosphatidylserine-richvesiclesapparentKd:277+/-11460+/-162341+/-28substantiallyincreasedoxidation9+/-0382+/-3814+/-60resultedvirtuallynormalcapacityphysiologicalhelpdefinemolecularbasesprovideelementsPS-mediatedbridginginflammationMembraneproteinvariants

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