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Biomedical subjects

C P Hayward

Publications and source records attributed to C P Hayward.

At least 19 recordsLinked to original sources

Multimerin processing by cells with and without pathways for regulated protein secretion.

Multimerin is a massive, soluble, homomultimeric, factor V-binding protein found in platelet alpha-granules and in vascular endothelium. Unlike platelets, endothelial cells contain multimerin within granules that lack the secretory granule membrane protein P-selectin, and in culture, they constitutively secrete most of their synthesized multimerin. To further evaluate multimerin's posttranslational processing and storage, we expressed human endothelial cell prepromultimerin in a variety of cell lines, with and without pathways for regulated secretion. The recombinant multimerin produced by these different cells showed variations in its glycosylation, proteolytic processing, and multimer profile, and human embryonic kidney 293 cells recapitulated multimerin's normal processing for constitutive secretion by human endothelial cells. When multimerin was expressed in a neuroendocrine cell line capable of regulated protein secretion, it was efficiently targeted for regulated secretion. However, the multimerin stored in these cells was proteolyzed more extensively than normally occurs in platelets, suggesting that endoproteases similar to those expressed by megakaryocytes are required to produce platelet-type multimerin. The impact of the tissue-specific differences in multimerin's posttranslational processing on its functions is not yet known. Multimerin's sorting and targeting for regulated secretion may be important for its functions and its association with factor V in secretion granules.

Blood Platelets

Serum-induced platelet procoagulant activity: an assay for the characterization of prothrombotic disorders.

Platelets contribute to hemostasis by forming a platelet plug and by providing a procoagulant surface for the assembly and activation of the coagulation factors. The contribution of platelets to prothrombotic disorders has been difficult to analyze. Recently an assay was reported that measured the procoagulant activity of test platelets by making the platelet lipid surface the limiting factor in the production of thrombin. In this report we describe a novel technique, based on this assay, that we used to study patient serum factors that activate control platelets and in turn initiate measurable procoagulant activity. Using this assay we investigated a group of patients with prothrombotic disorders. The patient test serum was incubated with normal platelets in the presence of activated factor Xa. The resultant thrombin was measured in a chromogenic assay. The rate-limiting step was the presence of any potential platelet-activating factors, such as antibodies in the heat-treated test serum, that would allow the Xa to bind to the platelet phospholipid surface. Serum samples from patients with heparin-induced thrombocytopenia (HIT) and the anti-phospholipid antibody syndrome enhanced platelet procoagulant activity, while samples from patients with idiopathic thrombocytopenic purpura and disseminated intravascular coagulation (DIC) did not. HIT serum samples also induced platelet activation, as measured by platelet microparticle shedding, carbon 14-labeled serotonin release, and platelet aggregation. The measurement of serum-induced platelet procoagulant activity provides a method for the investigation of circulating platelet agonists in prothrombotic disorders.

Antiphospholipid Syndrome

Measurement of endogenous and exogenous alpha-granular platelet proteins in patients with immune and nonimmune thrombocytopenia.

Idiopathic thrombocytopenic purpura (ITP) is caused by antiplatelet antibodies and is characterized by increased platelet destruction and elevated levels of IgG (platelet-associated IgG, PAIgG). Nonimmune thrombocytopenic patients also have elevated levels of PAIgG. In this study we investigated two possible biological explanations for the increased levels of PAIgG in these patients. The first hypothesis suggests that a thrombocytopenic stress causes increased thrombocytopoiesis with increased numbers and content of the platelet alpha granules. The second hypothesis is that for uncertain reasons (immunological or cytokine) there is increased absorption of plasma proteins by either megakaryocytes or by the platelets themselves. To address this issue, we compared the level of megakaryocyte synthesized alpha granular proteins [platelet factor 4 (PF4) and beta-thromboglobulin (beta-TG)] to plasma-absorbed alpha granular proteins (albumin, IgG and fibrinogen) in patients with immune (n = 39) and nonimmune (n = 60) thrombocytopenias. Plasma-absorbed alpha-granular proteins were elevated in both immune and nonimmune thrombocytopenia with no increase in megakaryocyte synthesized alpha-granular proteins. These plasma-derived protein elevations were not attributable to elevated mean platelet volumes or elevated plasma concentrations of the respective protein. We hypothesize that the increased IgG in these platelets is not the result of production of larger platelets, but reflects a selective increase in the endocytosis of plasma-absorbed alpha-granular proteins at the megakaryocyte and/or platelet level.

Albumins

Studies of multimerin in human endothelial cells.

Multimerin is a novel, massive, soluble protein that resembles von Willebrand factor in its repeating, homomultimeric structure. Both proteins are expressed by megakaryocytes and endothelial cells and are stored in the region of platelet alpha-granules resembling Weibel-Palade bodies. These findings led us to study the distribution of multimerin within human endothelial cells. Multimerin was identified in vascular endothelium in situ. In cultured endothelial cells, multimerin was identified within round to rod-shaped, dense-core granules, some of which contained intragranular, longitudinally arranged tubules and resembled Weibel-Palade bodies. However, multimerin was found primarily in different structures than the Weibel-Palade body proteins von Willebrand factor and P-selectin. After stimulation with secretagogues, multimerin was observed to redistribute from intracellular structures to the external cellular membrane, without detectable accompanied secretion of multimerin into the culture media. In early passage endothelial cell cultures, multimerin was associated with extensive, fibrillary, extracellular matrix structures, in a different distribution than fibronectin. Although multimerin and von Willebrand factor are stored together in platelets, they are mainly found within different structures in endothelial cells, indicating that there are tissue-specific differences in the sorting of these soluble, multimeric proteins.

Blood Proteins

ABH antigens on human platelets: expression on the glycosyl phosphatidylinositol-anchored protein CD109.

Platelets express alloantigens that are platelet specific (eg, the HPA antigens) and alloantigens that are shared with other blood cells (eg, the ABH antigens). The blood group A and B determinants are expressed on glycolipids and on some intrinsic platelet membrane glycoproteins. This report characterizes multiple platelet proteins reacting with blood group antibodies in serum samples from mothers of children born with neonatal alloimmune thrombocytopenia. ABH antigens on additional platelet proteins are identified, including the glycosyl phosphatidylinositol-anchored protein CD109. The proteins that carry ABH antigens were identified by using monoclonal antibodies to glycoproteins Ib, IIb/IIIa, Ia/IIa, CD31, and CD109 and immunoprecipitation/immunoblotting techniques with monoclonal antibodies to A and B antigens. The maternal serum samples and anti-A and anti-B monoclonal antibodies immunoprecipitated identical radiolabeled platelet proteins including proteins at 220 and 175 kd and proteins with mobilities corresponding to glycoproteins Ib, IIb/IIIa, IV, and V. Treatment of platelets with phosphatidylinositol-specific phospholipase C released into the supernatant a 175-kd protein that expressed the blood group determinants. This protein comigrated with the glycosyl phosphatidylinositol-anchored protein CD109. When platelet proteins were purified by immunoprecipitation with monoclonal antibodies and then tested by immunoblotting, anti-A reacted with the glycosyl phosphatidylinositol-anchored protein CD109 and to glycoproteins Ib, IIb, IIa, IIIa, and CD31 (PECAM). These results indicate that structures for modification by glycosyltransferases exist on platelet CD109, which also expresses the Gov alloantigen system. This study indicates that certain platelet proteins express both platelet-specific and blood group antigens that may contribute to platelet transfusion refractoriness and to neonatal alloimmune thrombocytopenia.

Animals

Studies of multimerin in patients with von Willebrand disease and platelet von Willebrand factor deficiency.

In normal platelet alpha-granules von Willebrand factor (VWF) is stored with multimerin and factor V in an eccentric electron-lucent zone. Because the platelet stores of VWF are deficient in 'platelet low' type 1 and type 3 von Willebrand disease (VWD), we investigated their electron-lucent zone proteins. The patients with VWD had partial to complete deficiencies of plasma and platelet VWF but normal alpha-granular multimerin and factor V, and normal alpha-granular fibrinogen, thrombospondin-1, fibronectin, osteonectin and P-selectin. In type 3 VWD platelets, alpha-granular electron-lucent zones lacking VWF-associated tubules were identified and multimerin was found in its normal alpha-granular location. These findings indicate that the formation of the electron-lucent zone and the sorting of multimerin to this region occur independent of VWE The isolated abnormalities in VWF suggests a VWF gene mutation is the cause of 'platelet low' type 1 VWD.

Blood Platelets

The pathogenesis of venous limb gangrene associated with heparin-induced thrombocytopenia.

BACKGROUND: Platelet-mediated arterial occlusion is a well-recognized cause of limb loss in patients with heparin-induced thrombocytopenia. However, the syndrome of distal ischemic necrosis complicating the deep venous thrombosis (venous limb gangrene) sometimes associated with heparin-induced thrombocytopenia has not been well characterized. OBJECTIVE: To study the pathogenesis of venous limb gangrene associated with heparin-induced thrombocytopenia. DESIGN: Characterization (based on descriptive and case-control studies) of a novel syndrome of limb loss and hypothesis testing by analysis of plasma samples. SETTING: Five university-associated hospitals in one medical community. PATIENTS: Clinical and laboratory records of 158 patients with heparin-induced thrombocytopenia were reviewed to identify patients with venous limb gangrene (n = 8), limb arterial thrombosis (n = 10), and uncomplicated deep venous thrombosis (n = 58). MEASUREMENTS: Clinical and laboratory factors associated with venous limb gangrene, including thrombin-antithrombin complexes and vitamin K-dependent procoagulant and anticoagulant factors. RESULTS: Warfarin treatment was more frequently associated with venous limb gangrene than with limb arterial thrombosis (8 of 8 patients compared with 3 of 10 patients; P = 0.004). The anticoagulant effect of warfarin seemed greater in the 8 patients with venous limb gangrene than in the 58 patients who did not develop gangrene (median International normalized ratio, 5.8 compared with 3.1; P < 0.001). Compared with plasma from controls, plasma from patients with venous limb gangrene had a higher ratio of thrombin-antithrombin complex to protein C activity during warfarin treatment. No hereditable abnormalities of the protein C anticoagulant pathway were seen in any patient. CONCLUSIONS: Warfarin treatment of deep venous thrombosis associated with heparin-induced thrombocytopenia is a possible cause of venous limb gangrene, perhaps because of acquired failure of the protein C anticoagulant pathway to regulate thrombin generation.

Adult

Studies of a second family with the Quebec platelet disorder: evidence that the degradation of the alpha-granule membrane and its soluble contents are not secondary to a defect in targeting proteins to alpha-granules.

We recently described a Quebec family with an autosomal dominant bleeding disorder characterized by mildly reduced-low normal platelet counts, an epinephrine aggregation defect, multimerin deficiency, and proteolytic degradation of several, soluble alpha-granular proteins. Similar clinical features led us to investigate a second family with an unexplained, autosomal dominant bleeding disorder. The affected individuals had reduced to normal platelet counts, absent platelet aggregation with epinephrine, and multimerin deficiency. Their platelet alpha-granular proteins factor V, thrombospondin, von Willebrand factor, fibrinogen, fibronectin, osteonectin, and P-selectin were proteolyzed and comigrated with the degradation products found in patients from the other family. However, their platelet albumin, IgG, external membrane glycoproteins, CD63 (a lysosomal and dense granular protein), calpain, and plasma von Willebrand factor were normal, indicating restriction in the proteins proteolyzed. Electron microscopy studies indicated preserved alpha-granular ultrastructure, despite degradation of soluble and membrane alpha-granular proteins. Immunoelectron microscopy studies of the patients' platelets indicated that fibrinogen, von Willebrand factor, P-selectin, multimerin, and factor V were within alpha-granules, with normal to reduced labeling for these proteins. Pathologic proteolysis of alpha-granular contents, rather than a defect in targeting proteins to alpha-granules, may be the cause of the protein degradation in the Quebec platelet disorder.

Adult

Proteolytic degradation of high molecular weight kininogen in acute thrombotic thrombocytopenic purpura.

Thrombotic thrombocytopenic purpura (TTP) is a disorder characterized by thrombocytopenia and schistocytic haemolytic anaemia. The majority of patients have normal coagulation parameters including the activated partial thromboplastin time (APTT). An intracellular cysteine protease, calpain, has been found in the plasma of many patients with acute TTP, and we hypothesize that it participates in the pathogenesis of the disorder. However, certain aspects of the disorder remain unresolved. For example, high molecular weight kininogen (HK) is one of the primary plasma inhibitors of calpain, and it also can act as a substrate for calpain. Consequently, one might anticipate that the HK could be defective or altered in TTP. In this report we describe the analysis of HK in plasma from live patients with acute TTP and following recovery. The HK was studied immunogenically and functionally. We observed that the HK in plasma samples from patients with acute TTP was proteolysed. This degradation was not observed in remission samples from the same patients. However, both acute and remission TTP samples had normal HK coagulant activity (acute samples, x = 0.84 +/- 0.26 U/ml; remission samples, x = 0.89 +/- 0.21 U/ml; control samples, x = 0.87 +/- 0.05 U/ml). Although the TTP plasmas were able to inhibit calpain activity, less inhibition activity was found in the acute samples (acute: mean inhibition 71 +/- 2.4%; remission: mean 92 +/- 2.1%; control samples: mean 93 +/- 5.4%; P < 0.001). Normal HK treated with calpain also had reduced calpain inhibition capacity (mean 58%). This study suggests that although HK is proteolysed during acute TTP, the proteolysis occurs without a major loss in the coagulation function or depletion of the protease inhibitory activity of HK.

Acute Disease

Fibrinogen degradation products in patients with the Quebec platelet disorder.

The Quebec platelet disorder is a serious bleeding disorder associated with proteolysis of alpha-granular proteins, including fibrinogen. We evaluated fibrinogen degradation product (FDP) assays as screening tests for this disorder. Patients with the Quebec platelet disorder (13/13) had elevated serum FDPs (P < 0.01) due to secreted degraded platelet fibrinogen, but normal plasma FDPs and D-dimers. Unrelated controls with bleeding disorders (32/34) had undetectable FDPs, and controls with FDPs due to disseminated intravascular coagulation (DIC) and other illnesses (11/11) had elevated FDPs in all assays (P < 0.01). Immunoblot analyses indicated plasma fibrinogen was normal in the Quebec patients and platelet FDPs were found in their platelet lysates, releasates and serum samples. Their platelet FDPs were not altered by treatment with fibrinolytic inhibitors and were different from the FDPs in DIC and in plasmin-digested fibrinogen. Tests for serum FDPs may provide a simple rapid way to screen for the Quebec platelet disorder.

Antifibrinolytic Agents

Maternal immunization to Gov system alloantigens on human platelets.

BACKGROUND: Immunization to platelet alloantigens can occur during pregnancy or after the transfusion of blood components. Platelet alloantibodies can cause neonatal alloimmune thrombocytopenia and posttransfusion purpura. Transfusion-induced alloimmunization to a novel platelet alloantigen system, Gov, expressed on the 175-kDa glycosyl phosphatidylinositol-anchored platelet glycoprotein, CD109, was previously described. This report describes three unrelated patients who were alloimmunized to Gov(a) or Gov(b) during pregnancy. STUDY DESIGN AND METHODS: Platelets were typed by using radioimmunoprecipitation for HPA-1a, -3a, -5a, -5b, Gov(a), and Gov(b) and by polymerase chain reaction-restriction fragment length polymorphism for HPA-1a, -1b, -3a, and -3b. Maternal sera were screened for platelet antibodies by using radioimmunoprecipitation and the antigen capture assay. RESULTS: Patients 1 and 2 were investigated after the diagnosis of neonatal alloimmune thrombocytopenia in their children, and alloantibodies specific for Gov(b) and Gov(a), respectively, were detected in maternal serum. Serum from patient 3, who had mild idiopathic thrombocytopenia purpura with no detectable autoantibody, was found to contain alloantibodies to Gov(b) and to HPA-5b, presumably as a result of immunization during pregnancy. Platelet typings confirmed that the patients were at risk for alloimmunization to the respective antigen. CONCLUSION: This report of three cases of maternal alloimmunization to antigens in the Gov system indicates that immunization can occur via placental transfer of antigen and that Gov system alloantibodies may be associated with neonatal alloimmune thrombocytopenia.

Adult

Multimerin: a bench-to-bedside chronology of a unique platelet and endothelial cell protein--from discovery to function to abnormalities in disease.

In studies conducted about 8 years ago, the author and her colleagues raised a monoclonal antibody that recognized an uncharacterized human platelet protein with a reduced molecular mass of 155 kDa. Investigations of this protein's nonreduced structure yielded surprising findings: in its native state, it exists as massive disulfide-linked multimers millions of daltons in size, making it one of the largest proteins found in the human body. This feature led the author to designate this protein "multimerin." Multimerin is found in endothelial cells as well as in platelets. It originates from a single subunit protein, promultimerin, that undergoes extensive N-glycosylation, proteolytic processing and polymerization during biosynthesis. Recent data from the cloning and sequencing of its complementary DNA indicate that multimerin is a unique protein. Like von Willebrand factor, it has a massive repeating structure, but these proteins are unrelated. Multimerin's sequence contains the adhesive motif Arg-Gly-Asp-Ser, central coiled-coil sequences, several epidermal growth-factor-like motifs, and a globular domain that is similar to a protein-binding domain found in complement C1q and in collagens type VIII and X. Investigations of multimerin's function indicate that it binds the coagulation protein factor V and its activated form, factor Va. In platelets, but not in plasma, all of the biologically active factor V is complexed with multimerin. Multimerin may also have functions as an extracellular matrix or adhesive protein. Recently, members of 2 Canadian families with puzzling autosomal-dominant bleeding disorders were found to have a deficiency of platelet multimerin. Studies of these patients may provide a unique opportunity to evaluate the functions of multimerin.

Amino Acid Sequence

Splenectomy done during hematologic remission to prevent relapse in patients with thrombotic thrombocytopenic purpura.

OBJECTIVE: To assess whether splenectomy done during hematologic remission reduces the relapse rate in patients with relapsing thrombotic thrombocytopenic purpura. DESIGN: Consecutive case series. SETTING: Tertiary care teaching hospital. PATIENTS: 6 consecutive patients seen during a 10-year period who had had one or more relapses of thrombotic thrombocytopenic purpura. INTERVENTIONS: All patients had elective splenectomy while in hematologic remission and were followed after surgery for as long as 8.0 years. MEASUREMENTS: Attack rates (events per year) were calculated for each patient from time of presentation to time of splenectomy and from time of splenectomy to January 1996. RESULTS: A total of 26 episodes of thrombotic thrombocytopenic purpura occurred over 22.3 patient-years before splenectomy. After splenectomy, 3 acute episodes occurred over 22.7 patient-years. The attack rate (+/-1 SD) decreased from 2.3 +/- 2.0 events per year to 0.1 +/- 0.1 events per year. CONCLUSION: In patients who have had one or more relapses of thrombotic thrombocytopenic purpura, splenectomy done during hematologic remission reduces the frequency of acute relapse and the resulting need for medical therapy.

Humans

An autosomal dominant, qualitative platelet disorder associated with multimerin deficiency, abnormalities in platelet factor V, thrombospondin, von Willebrand factor, and fibrinogen and an epinephrine aggregation defect.

Multimerin is a massive soluble, multimeric protein found in platelets and endothelial cells. Recent studies identified multimerin as a specific coagulation factor V binding protein, complexed with platelet, but not plasma, factor V. These findings led us to investigate individuals with inherited factor V deficiencies for possible multimerin abnormalities. Platelet proteins were evaluated using immunoassays, sodium dodecyl sulfate-polyacrylamide gel electrophoresis, immunoblotting, immunoprecipitation, and direct binding studies. Patients with factor V Quebec, a disorder with abnormal platelet factor V, had a quantitative deficiency in multimerin (n = 11 tested; mean, 12.5%; range, 5% to 27% of the normal pool; normal range, 45% to 214%) with a normal multimer pattern. Quantitative and qualitative abnormalities were detected in their platelet factor V. An unrelated patient who was deficient in platelet and plasma factor V had normal platelet multimerin. The levels of platelet beta-thromboglobulin, von Willebrand factor, thrombospondin, and fibrinogen antigen were normal in the factor V Quebec patients. However, proteins with abnormal mobility were detected in their platelet lysate and releasate, and their platelet thrombospondin, von Willebrand factor, and fibrinogen showed evidence of proteolytic degradation. Platelet counts of the factor V Quebec patients ranged from mildly thrombocytopenic to low normal (mean, 159 x 10(9)/L; range, 104 to 198 x 10(9)/L). In addition, their platelets failed to aggregate in response to 6 to 10 micromol/L epinephrine despite normal numbers of platelet alpha 2-adrenergic receptors. These data indicate that patients with factor V Quebec have an inherited bleeding disorder distinct from other platelet disorders and associated with multiple abnormalities, including multimerin deficiency, abnormal platelet factor V, thrombospondin, von Willebrand factor, and fibrinogen, and an epinephrine aggregation defect.

Afibrinogenemia

Isolation and characterization of cysteine proteinase in thrombotic thrombocytopenic purpura.

Thrombotic thrombocytopenic purpura (TTP) is an uncommon disorder characterized by thrombocytopenia, schistocytic haemolytic anaemia, fever, neurologic lesions, and renal failure. A platelet aggregating factor has been postulated to be responsible for this disorder, but its precise identity remains debated. Two different groups of investigators have provided evidence that the platelet aggregating factor is a cysteine proteinase. We have suggested that it was calpain, whereas others have suggested that it was calpain, whereas others have suggested that it was cathepsin L. To help resolve this issue, we have studied the platelet activating activity found in the acute serum samples from 10 different TTP patients as well as purified calpain and cathepsin L. The TTP activity was measured functionally (platelet serotonin release assay and casein lysis assay) and antigenically (immunodepletion using anti-calpain and anti-cathepsin L antibodies and antigenic analysis using SDS PAGE). The TTP serum paralleled the activity of the purified calpain and had optimal pH activity of 7.5. The purified cathepsin L activity had optimal activity at low pH (5.5) and activity was no longer measurable at pH 7.5. Similarly, a specific cathepsin L inhibitor (Z-Phe-Phe-CHN2) had no effect on the activity of the TTP samples nor on purified calpain, but it did abolish the activity activity of purified cathepsin L. The platelet activating of the TTP samples was detectable in the microparticle pellet following ultracentrifugation of TTP serum, and could be immunodepleted using antibodies to calpain but not to cathepsin L. These studies indicate that the microparticle-associated platelet activating factor in TTP corresponds to calpain.

Blood Platelets

The epitope specificity of heparin-induced thrombocytopenia.

Heparin-induced thrombocytopenia (HIT) is caused by antibodies (HIT-Abs) that bind to a complex of heparin and platelet factor 4. We investigated the epitope specificity of the HIT-Abs, and found that the HIT-Abs recognized solid-phase immobilized complexes with an optimum ratio of four to eight molecules of PF4 per molecule of heparin. To try to define the epitopes within the PF4 molecule, intact and reduced (linearized) PF4 was tested against 29 different sera from patients with HIT. In addition, eight different peptides that spanned the PF4 molecule were studied for their ability to bind to the HIT-Abs either alone or in the presence of heparin. With the exception of a subpopulation of patient samples (5/29, 17%), we found that reduced PF4 and the peptides were uniformly non-reactive with the HIT-Abs in the presence of heparin. Reduced PF4 and PF4 carboxy-terminal peptides with a minimum size of 19 amino acids were recognized by a minority (5/29) of HIT-Abs samples but only when heparin was present. The specificity of this subgroup of samples from patients with HIT was highly restricted and the loss of one amino acid (peptide reduced in length from 19 to 18 amino acids) rendered the peptides non-reactive. The clinical characteristics of these patients were similar to the other HIT patients. These studies demonstrate that the majority of HIT-Abs recognize a noncontiguous conformational epitope on the PF4 molecule that is produced when four to eight PF4 molecules are bound together by heparin.

Antibodies

A diagnostic test for heparin-induced thrombocytopenia: detection of platelet microparticles using flow cytometry.

Based on our previous observation that heparin-induced thrombocytopenia (HIT) sera can generate platelet microparticles from washed platelets in a heparin-dependent fashion, we developed a test for HIT using flow-cytometry to measure heparin-dependent platelet microparticle formation. During the developmental phase of the assay the optimal physical conditions for microparticle generation were defined. 133 sera were then evaluated using the microparticle assay and the serotonin release assay to determine the threshold for defining a positive result that gave optimal sensitivity and specificity. The microparticle assay was then prospectively evaluated against the serotonin release assay in 202 sera referred to our laboratory for HIT testing. Overall agreement between the two assays was 96% (Cohen's kappa = 0.91). When the clinical data were reviewed on patients whose sera gave discrepant results between the two assays, no case of HIT was detected by one assay and missed by the other. The platelet microparticle assay is as accurate as the serotonin release assay and may be a useful non-radioactive test for HIT.

Biological Assay

Characterization and localization of the Gova/b alloantigens to the glycosylphosphatidylinositol-anchored protein CDw109 on human platelets.

The Gova/b alloantigens are expressed on a 175-kD protein (GP175) on human platelets. Anti-Gov alloantibodies have been implicated in posttransfusion purpura and alloimmune neonatal thrombocytopenia. In this report we characterize the immunochemistry of the alloantigens and identify the platelet protein that expresses the Gov epitopes. Approximately 50% of GP175 containing the Gov epitope was released from platelets treated with phosphatidylinositol-specific phospholipase C, indicating that at least some of this protein exists as a glycosylphosphatidylinositol (GPI)-linked isoform. Radioimmunoprecipitation and immunodepletion studies indicated that the Gova/b alloantigens are expressed on the GPI-anchored CDw109 protein. The Gova/b epitopes were expressed on an extracellular, 120-kD soluble fragment (p120) of CDw109 produced by calcium-dependent protease cleavage. Anti-Gov immunoprecipitates of chymotryptic digests of p120 contained 70- and 52-kD fragments of CDw109. Deglycosylation of native CDw109 had no effect on recognition by Gov alloantisera; however, the epitopes were destroyed after exposure to sodium dodecyl sulfate. Gova/b alloantigens were expressed on platelets and PHA-activated T-cells, cultured human umbilical vein endothelial cells, and by many different tumor cell lines, consistent with the tissue distribution of CDw109.

Antibodies, Monoclonal