High molecular weight kininogen (HMW)-kininogen, the cofactor of contact-activated blood coagulation, accelerates the activation of Factor XII, prekallikrein, and Factor XI on a negatively charged surface. Although prekallikrein and Factor XI circulate as a complex with HMW-kininogen, no physical association has been demonstrated between Factor XII and HMW-kininogen, nor has the order of adsorption to surfaces of these proteins been fully clarified. In this report we explore the requirements for adsorption of HMW-kininogen to a clot-promoting surface (kaolin), in purified systems, as well as in normal plasma and plasma genetically deficient in each of the proteins of the contact system. The fraction of each coagulant protein associated with the kaolin pellet was determined by measuring the difference in coagulant activity between the initial sample and supernatants after incubation with kaolin, or by directly quantifying the amount of 125I-HMW-kininogen that was associated with the kaolin pellet. In normal plasma, the adsorption of HMW-kininogen to kaolin increased as the quantity of kaolin was increased in the incubation mixture. However, the HMW-kininogen in Factor XII-deficient plasma did not absorb appreciably to kaolin. Furthermore, the quantity of HMW-kininogen from prekallikrein-deficient plasma that adsorbed to kaolin was decreased as compared with normal plasma. These observations suggested that HMW-kininogen in plasma must be altered by a reaction involving both Factor XII and prekallikrein in order for HMW-kininogen to adsorb to kaolin, and to express its coagulant activity. Subsequently, the consequence of the inability of HMW-kininogen to associate with a negatively charged surface results in decreased surface activation. This assessment was derived from the further observation of the lack of prekallikrein adsorption and the diminished Factor XI adsorption in both Factor XII-deficient and HMW-kininogen-deficient plasmas, since these two zymogens (prekallikrein and Factor XI) are transported to a negatively charged surface in complex with HMW-kininogen. The percentage of HMW-kininogen coagulant activity that adsorbed to kaolin closely correlated (r = 0.98, slope = 0.97) with the amount of 125I-HMW-kininogen adsorbed, suggesting that adsorption of HMW-kininogen results in the expression of its coagulant activity. Since kallikrein, which is known to cleave HMW-kininogen, is generated when kaolin is added to plasma, we tested the hypothesis that proteolysis by kallikrein was responsible for the enhanced adsorption of HMW-kininogen to kaolin. When purified HMW-kininogen was incubated with purified kallikrein, its ability to absorb to kaolin increased with time of digestion until a maximum was reached. Moreover, (125)I-HMW-kininogen, after cleavage by kallikrein, had markedly increased affinity for kaolin than the uncleaved starting material. Furthermore, fibrinogen, at plasma concentration (3 mg/ml), markedly curtailed the adsorption of a mixture of cleaved and uncleaved HMW-kininogen to kaolin, but was unable to prevent fully cleaved HMW-kininogen from adsorbing to the kaolin. Addition of purified kallikrein to Factor XII-deficient plasma, which bypasses Factor XII-dependent contact-activation amplified the ability of its HMW-kininogen to adsorb to kaolin. These observations indicate that HMW-kininogen is a procofactor that is activated by kallikrein, a product of a reaction which it accelerates. This cleavage, which enhances its association with a clot-promoting surface in a plasma environment, is an event that is necessary for expression of its cofactor activity. These interactions would allow coordination of HMW-kininogen adsorption with the adsorption of Factor XII, which adsorbs independently of cleavage, to the same negatively charged surface.
C F Scott, L D Silver, M Schapira, R W Colman
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Neutrophil Adhesion on Polyurethanes Preadsorbed With High Molecular Weight Kininogen
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Lack of Clinically Significant Contact System Activation During Platelet Concentrate Filtration by Leukocyte Removal Filters
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Contact System: A Vascular Biology Modulator With Anticoagulant, Profibrinolytic, Antiadhesive, and Proinflammatory Attributes
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Blood | 1997 |
Activation of plasma contact and coagulation systems and neutrophils in the active phase of ulcerative colitis
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Structure/Function Analysis of Human Factor XII Using Recombinant Deletion Mutants. Evidence for an Additional Region Involved in the Binding to Negatively Charged Surfaces
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The influence of biomaterials on inflammatory responses to cardiopulmonary bypass
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Structural biology, cellular interactions and pathophysiology of the contact system
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Thrombosis Research | 1993 |
Parallel mechanisms of high molecular weight kininogen action as a cofactor in kallikrein inactivation and prekallikrein activation reactions
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Biochemistry | 1993 |
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The Journal of biological chemistry | 1993 |
Genetic basis of total kininogen deficiency in Williams' trait
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The Journal of biological chemistry | 1993 |
Deletion mutagenesis of high molecular weight kininogen light chain. Identification of two anionic surface binding subdomains
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The Journal of biological chemistry | 1993 |
Purification and characterization of a potent 70-kDa thiol lysyl-proteinase (Lys-gingivain) from Porphyromonas gingivalis that cleaves kininogens and fibrinogen
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The Journal of biological chemistry | 1993 |
The sequence HGLGHGHEQQHGLGHGH in the light chain of high molecular weight kininogen serves as a primary structural feature for zinc-dependent binding to an anionic surface
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Protein Science | 1992 |
Studies of surface activated coagulation: antisera binding onto methyl gradients on silicon incubated in human plasma in vitro
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Biomaterials | 1992 |
Fibrinogen blocks the autoactivation and thrombin-mediated activation of factor XI on dextran sulfate
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Proceedings of the National Academy of Sciences | 1992 |
Inhibition of cell adhesion by high molecular weight kininogen
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The Journal of Cell Biology | 1992 |
Activation of the contact system in lethal hypotensive bacteremia in a baboon model
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The American Journal of Pathology | 1992 |
Mediators of Sepsis
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1992 | |
Domain 3 of kininogens contains a cell-binding site and a site that modifies thrombin activation of platelets
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The Journal of biological chemistry | 1992 |
The effects of temperature and buffer on fibrinogen adsorption from blood plasma to glass
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Journal of Biomaterials Science, Polymer Edition | 1991 |
Mechanism of the participation of the contact system in the Vroman effect. Review and summary
CF Scott |
Journal of Biomaterials Science, Polymer Edition | 1991 |
Blood Use in Cardiac Surgery
N Friedel, R Hetzer, D Royston |
1991 | |
Low molecular weight kininogen binds to platelets to modulate thrombin-induced platelet activation
FJ Meloni, AH Schmaier |
The Journal of biological chemistry | 1991 |
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Biochemical Journal | 1990 |
Fibrinogen, Thrombosis, Coagulation, and Fibrinolysis
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1990 | |
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Human neutrophils contain and bind high molecular weight kininogen
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Journal of Clinical Investigation | 1989 |
Normal haemostasis and its regulation
IJ Mackie, HA Bull |
Blood Reviews | 1989 |
High molecular weight kininogen inhibits fibrinogen binding to cytoadhesins of neutrophils and platelets
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The Journal of Cell Biology | 1989 |
Conformation of high molecular weight kininogen: Effects of kallikrein and factor XIa cleavage
GB Villanueva, L Leung, H Bradford, RW Colman |
Biochemical and Biophysical Research Communications | 1989 |
Binding of heparin to human high molecular weight kininogen
I Bjoerk, ST Olson, RG Sheffer, JD Shore |
Biochemistry | 1989 |
Kinins V
K Abe, H Moriya, S Fujii |
1989 | |
Physicochemical and biochemical aspects of fibrinogen adsorption from plasma and binary protein solutions onto polyethylene and glass
SM Slack, TA Horbett |
Journal of Colloid and Interface Science | 1988 |
The expression of high molecular weight kininogen on human umbilical vein endothelial cells
AH Schmaier, A Kuo, D Lundberg, S Murray, DB Cines |
The Journal of biological chemistry | 1988 |
The Fate of Fibrinogen following Adsorption at the Blood-Biomaterial, Interface
JL Brash |
Annals of the New York Academy of Sciences | 1987 |
Initiation of Blood Coagulation at Artificial Surfaces
RW Colman, CF Scott, AH Schmaier, YT Wachtfogel, RA Pixley, LH Edmunds |
Annals of the New York Academy of Sciences | 1987 |
Appropriate Animal Models for Research on Blood in Contact with Artificial Surfaces
CF Scott |
Annals of the New York Academy of Sciences | 1987 |
The Effects of Surface Chemistry and Coagulation Factors on Fibrinogen Adsorption from Plasma
SM Slack, JL Bohnert, TA Horbett |
Annals of the New York Academy of Sciences | 1987 |
A new assay for high molecular weight kininogen in human plasma using a chromogenic substrate
CF Scott, RA Pixley, RW Colman |
Thrombosis Research | 1987 |
Mapping of functional domains of human high molecular weight and low molecular weight kininogens using murine monoclonal antibodies
H Ishiguro, S Higashiyama, I Ohkubo, M Sasaki |
Biochemistry | 1987 |
Determination of the bifunctional properties of high molecular weight kininogen by studies with monoclonal antibodies directed to each of its chains
AH Schmaier, D Schutsky, A Farber, LD Silver, HN Bradford, RW Colman |
The Journal of biological chemistry | 1987 |
High molecular weight kininogen binds to unstimulated platelets
EJ Gustafson, D Schutsky, LC Knight, AH Schmaier |
Journal of Clinical Investigation | 1986 |
The contact activation system: Biochemistry and interactions of these surface-mediated defense reactions
RW Colman, AH Schmaier, OD Ratnoff |
Critical Reviews in Oncology/Hematology | 1986 |
Activation of Factor XII in Acetone-Treated Human Plasma: Significance of the Functional State of Plasma Kallikrein for the Extent of Activation
NO Hoem, K Briseid |
Acta Pharmacologica et Toxicologica | 1986 |
Adsorption of proteins out of plasma and solutions in narrow spaces
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Journal of Colloid and Interface Science | 1986 |
Kinins IV
LM Greenbaum, HS Margolius |
1986 | |
Formation of the Fibrin Clot: the Balance of Procoagulant and Inhibitory Factors
B Lämmle, JH Griffin |
Clinics in Haematology | 1985 |
Cleavage of human high molecular weight kininogen by factor XIa in vitro. Effect on structure and function
CF Scott, LD Silver, AD Purdon, RW Colman |
The Journal of biological chemistry | 1985 |
Protein-protein interactions in contact activation of blood coagulation. Binding of high molecular weight kininogen and the 5-(iodoacetamido) fluorescein-labeled kininogen light chain to prekallikrein, kallikrein, and the separated kallikrein heavy and light chains
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The Journal of biological chemistry | 1985 |
Surface-mediated defense reactions. The plasma contact activation system
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