Modulation of human prothrombin activation on phospholipid vesicles and platelets using monoclonal antibodies to prothrombin fragment 2
Prothrombin contains two kringle domains that are removed during activation to the blood clotting enzyme alpha-thrombin. By analogy with other kringle-containing proteins the prothrombin kringles may play a role in the protein-protein interactions necessary for prothrombin activation. Four monoclona...
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Veröffentlicht in: | The Journal of biological chemistry 1991-05, Vol.266 (13), p.8384-8391 |
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Sprache: | eng |
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Zusammenfassung: | Prothrombin contains two kringle domains that are removed during activation to the blood clotting enzyme alpha-thrombin. By
analogy with other kringle-containing proteins the prothrombin kringles may play a role in the protein-protein interactions
necessary for prothrombin activation. Four monoclonal antibodies to prothrombin kringle 2 have been produced against human
prothrombin, and a fifth monoclonal antibody was produced against a synthetic peptide consisting of amino acid residues 216-231
of kringle 2. Each antibody was tested for its ability to block prothrombin activation by factor Xa. In the presence of phosphatidylcholine/phosphatidylserine
vesicles and factor Va, two of the antibodies, alpha HII-3 and alpha HII-4, inhibited prothrombin activation at a 90 and 50%
level, respectively. Two other monoclonal antibodies (alpha HII-6 and alpha HII-7) and the antipeptide antibody (alpha HII-5)
had no effect on prothrombin activation. When factor Xa was the catalyst alone, antibody alpha HII-3 lost the ability to inhibit
prothrombin activation whereas antibody alpha HII-4 again partially inhibited the reaction. When human platelets were the
reaction surface, the patterns of inhibition by the anti-fragment 2 antibodies were identical to that observed with phospholipid
vesicles. These data suggest a role for prothrombin fragment 2 in activation, possibly by mediating the interaction of substrate
prothrombin with factor Xa or factor Va on the phospholipid surface. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1016/S0021-9258(18)92987-X |