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Biomedical subjects

B Wiman

Publications and source records attributed to B Wiman.

At least 73 records · Page 4Linked to original sources

Purification of high and low molecular weight plasminogen activator inhibitor 1 from fibrosarcoma cell-line HT 1080 conditioned medium.

Functionally active (high-Mr) and inactive (low-Mr) plasminogen activator inhibitor 1 (PAI) have been purified from fibrosarcoma cell-line HT 1080 conditioned medium, containing 1% fetal calf serum. The two forms were first purified by affinity chromatography on heparin-Sepharose and then separated from each other by gel filtration on Sephadex G-150. The final purification was achieved by affinity chromatography on insolubilized monoclonal antibodies towards human PAI. Alternatively, the low-Mr form was purified by chromatography on carboxymethyl-cellulose. Low-Mr PAI purified in this way, could be almost fully reactivated by treatment with guanidinium chloride. Sodium dodecyl sulphate-polyacrylamide gel electrophoresis followed by immunoblotting revealed that the low-Mr form contained nothing but PAI at an Mr of about 50,000. In addition to PAI, the high-Mr form contained a component, which was not antigenically related to PAI. This compound had a molecular weight of about 75,000 and its NH2-terminal amino acid sequence corresponded to that of human vitronectin. We conclude that the high-Mr form of PAI constitutes a complex between 50,000 Mr PAI and vitronectin from fetal calf serum.

Amino Acid Sequence↗

New receptor for human plasminogen on gram positive cocci.

180 bacterial strains representing 17 different species of gram positive cocci were tested for the ability to interact with human plasminogen. Receptors for plasminogen could be detected on 23/24 strains of S. pyogenes, 15/15 strains of S. equisimilis, 14/16 strains of human group G streptococci and 14/14 strains of S. pneumoniae. Eight of nineteen strains representing five species of alpha-hemolytic streptococci were also positive. S. equisimilis demonstrated the highest uptake with a median value of 58 per cent (20%-67%). On the other hand, all strains of S. agalactiae, the majority of S. faecalis and all S. aureus, S. epidermidis and S. saprophyticus strains tested were negative. The concentration of unlabelled plasminogen causing a 50 per cent reduction of bound tracer was between 50 and 150 mM. These estimates of the dissociation constant confirmed the specific nature of the interaction. Binding of plasminogen could be blocked by addition of plasmin-aprotinin complex, suggesting that plasminogen and plasmin bind to the same receptor. Binding was also blocked by the plasminogen fragment kringle 1-3, but not by miniplasminogen, a fragment containing kringle 5 and the B-chain region. As streptokinase interacts mainly with the B-chain of plasmin it is clear that the bacterial receptor for plasminogen is not identical to streptokinase.

Animals↗

Acute effects with reference to thrombogenicity and liver toxicity after injection of different coagulation factor concentrates.

In order to assess thrombogenicity and liver toxicity of different coagulation factor concentrates, antithrombin III, soluble fibrin, alanine aminotransferase (ALAT) and gamma-glutamyl transpeptidase (GT) were measured in samples taken before, 30 min and 24 h after the infusion. Seventy-six studies were performed in 55 patients with haemophilia A (37), B (11) or von Willebrand's disease, type III (7). A sharp rise of soluble fibrin was observed in 2 patients with haemophilia B, indicating that modern factor IX concentrates may still be thrombogenic. A slight increase was also seen after infusion of factor VIII-von Willebrand factor concentrates of low purity. Antithrombin III, ALAT and GT did not change significantly after any of the factor concentrates. The alterations in those parameters did not correlate with the impairment of liver function.

Adult↗

Plasminogen activator inhibitor 1 (PAI) is bound to vitronectin in plasma.

Functionally active plasminogen activator inhibitor 1 (PAI) is bound to a discrete binding protein in plasma [(1988) Thromb. Haemost. 59, 392-395]. The binding protein has now been partially purified using conventional chromatographic techniques. After addition of active PAI its complex with the binding protein was purified by chromatography on insolubilized monoclonal antibodies towards PAI. Dodecylsulphate (polyacrylamide gel electrophoresis revealed two main compounds with molecular masses of 50 and 75 kDa respectively. NH2-terminal amino acid sequence analysis and immunoblotting analysis suggested that the two compounds were PAI (50 kDa) and vitronectin (75 kDa). We conclude that the PAI-binding protein is identical to vitronectin.

Amino Acid Sequence↗

Evidence for a discrete binding protein of plasminogen activator inhibitor in plasma.

Gel-filtration experiments of mixtures of functionally active and inactive forms of plasminogen activator inhibitor (PAI) with human plasma or bovine serum albumin have provided evidence for the existence of a discrete binding protein of PAI in plasma. Most likely it is a glycoprotein with a molecular weight of approximately 150,000. The data suggest that it forms a very stable complex with functionally active forms of PAI, but not with the inactive or "latent" PAI. However, the PAI activity seems not to be significantly altered by the interaction with the binding protein. Assuming that a stoichiometric complex is formed, titration experiments suggest that a pool of normal human plasma contains about 40-50 mg of PAI-binding protein liter.

Carrier Proteins↗

Kinetics of the inhibition of plasminogen activators by the plasminogen-activator inhibitor. Evidence for 'second-site' interactions.

The reactions between plasminogen-activator inhibitor (PAI) and different plasminogen activators were studied in the presence of chromogenic peptide substrates for the enzymes. Our findings suggest that the rate constants for the reactions of PAI with single-chain tissue plasminogen activator (tPA), two-chain tPA, high-Mr urokinase and low-Mr urokinase are high and quite similar (1.6 X 10(7)-3.9 X 10(7) M-1.s-1). A free active site in the enzymes seems to be necessary for their reaction with PAI. Amino acids with antifibrinolytic properties did not interfere with the reactions. However, di-isopropyl phosphorofluoridate-inactivated tPA inhibited the reaction between PAI and all plasminogen activators in a similar way. These findings clearly demonstrated that a 'second-site' interaction, in addition to that between the enzyme active site and the inhibitor 'bait' peptide bond, is of importance for the high reaction rate. The reaction rate between PAI and single-chain tPA in the presence of an activator substrate (D-Ile-Pro-Arg p-nitroanilide) was decreased in the presence of fibrin. Fibrin caused a decrease in the Km for the single-chain tPA-substrate reaction. As a consequence, the 'free' concentration of single-chain tPA in the system decreased in the presence of fibrin, affecting the reaction rate between PAI and single-chain tPA. The phenomenon might be of physiological relevance, in the sense that single-chain tPA bound to fibrin in the presence of plasminogen would be protected against inactivation by PAI.

Binding Sites↗

Comparison of plasminogen activator inhibitor activity and antigen in plasma samples.

A double antibody radioimmunoassay for determination of plasminogen activator inhibitor (PA-inhibitor) in plasma samples has been developed. The reliability of the method as assessed by determining the specificity, the accuracy, the detectability and the variability seems sufficient for use in clinical practice. The correlation between PA-inhibitor antigen as measured with this method and PA-inhibitor activity as measured with a spectrophotometric assay in 111 patients with thrombotic diseases was very good (r = 0.89). As calculated from the regression line or from the mean activity and mean antigen values a specific activity of about 800,000-900,000 arb U/mg was obtained for PA-inhibitor in these samples. In 15 healthy individuals a similar figure was obtained. The results suggest that PA-inhibitor in most plasma samples is fully active or close to fully active. PA-inhibitor activity and PA-inhibitor antigen have also been measured after venous occlusion. The data suggest that small amounts of PA-inhibitor is released on venous occlusion, but at the same time an inactivation takes place, most likely due to the formation of enzymatically inactive complex with simultaneously released t-PA.

Antigens↗

Amino-acid sequence of human alpha 2-antiplasmin.

The amino-acid sequence of human alpha 2-antiplasmin was determined by Edman degradation of peptides purified from CNBr, tryptic and chymotryptic digests. Of the total sequence of 452 amino acids of mature alpha 2-antiplasmin, as deduced from the cDNA sequence [Holmes et al. (1987) J. Biol. Chem. 262, 1659-1664], 444 residues were identified by amino-acid sequencing. Two differences were found between the peptide and cDNA analyses (Gly instead of Leu at position 10 and Gly instead of Ser at position 369). alpha 2-Antiplasmin contains two disulfide bridges (Cys64-Cys104 and Cys31-Cys113) and four glucosamine-based carbohydrate chains attached to Asn87, Asn256, Asn270 and Asn277. alpha 2-Antiplasmin is homologous with 12 other proteins belonging to the serine protease inhibitor (serpin) superfamily.

Amino Acid Sequence↗

Plasminogen activator inhibitor in plasma: risk factor for recurrent myocardial infarction.

Measurements of haemostatic function and metabolic and angiographic indices of risk were included in a prospective cohort study of variables predictive of recurrences within 3 years in 109 unselected men with a first myocardial infarction (MI) before the age of 45. In the course of follow-up, 16 patients had at least one reinfarction (fatal recurrences in 9 and nonfatal in 7) and 1 died suddenly. High plasma concentrations of the fast-acting plasminogen activator inhibitor were independently related to reinfarction along with dyslipoproteinaemia involving VLDL and HDL, poor left ventricular performance, and multiple-vessel coronary artery disease. Besides being independently associated with reinfarction in the present population, high triglyceride levels were possibly connected with a predisposition to thrombosis through a coexisting high level of plasminogen activator inhibitor. The data indicate that reduced fibrinolytic capacity due to increased plasma levels of the plasminogen activator inhibitor predisposes to reinfarction in a complex interplay with atherogenic factors, multiple coronary lesions, and compromised left ventricular function.

Adult↗

Immunological relationship between plasminogen activator inhibitors from different sources.

Polyclonal antibodies have been raised against the inhibitor moiety in the purified complex between tissue plasminogen activator and its fast inhibitor (PA-inhibitor) in human plasma/serum. A radioimmunoassay for quantitation of PA-inhibitor antigen was developed. The polyclonal antiserum and a previously described monoclonal antibody against the PA-inhibitor (14) have been used to study the immunological relationship between PA-inhibitors from plasma, serum, platelets, placenta extract and conditioned media from Hep G2 and HT 1080 cells. It was demonstrated that the ratio between PA-inhibitor activity and antigen varied considerably between the different sources. In the plasma samples studied, similar activity and antigen concentrations were found, suggesting that the PA-inhibitor in these samples mainly was in an active form. On the other hand the other sources seemed to contain variable amounts of inactive PA-inhibitor forms. Immunoadsorption experiments revealed that the PA-inhibitor (activity and antigen) from all the sources were specifically bound to the insolubilized antibodies (polyclonal and monoclonal). In no case, however, could active PA-inhibitor be eluted from the immunoadsorption columns. Also the competitive radioimmunoassays suggested that the PA-inhibitors from the different sources studied, were closely immunologically related.

Animals↗

Human C1 inhibitor: primary structure, cDNA cloning, and chromosomal localization.

The primary structure of human C1 inhibitor was determined by peptide and DNA sequencing. The single-chain polypeptide moiety of the intact inhibitor is 478 residues (52,869 Da), accounting for only 51% of the apparent molecular mass of the circulating protein (104,000 Da). The positions of six glucosamine-based and five galactosamine-based oligosaccharides were determined. Another nine threonine residues are probably also glycosylated. Most of the carbohydrate prosthetic groups (probably 17) are located at the amino-terminal end (residues 1-120) of the protein and are particularly concentrated in a region where the tetrapeptide sequence Glx-Pro-Thr-Thr, and variants thereof, is repeated 7 times. No phosphate was detected in C1 inhibitor. Two disulfide bridges connect cysteine-101 to cysteine-406 and cysteine-108 to cysteine-183. Comparison of the amino acid and cDNA sequences indicates that secretion is mediated by a 22-residue signal peptide and that further proteolytic processing does not occur. C1 inhibitor is a member of the large serine protease inhibitor (serpin) gene family. The homology concerns residues 120 through the C-terminus. The sequence was compared with those of nine other serpins, and conserved and nonconserved regions correlated with elements in the tertiary structure of alpha 1-antitrypsin. The C1 inhibitor gene maps to chromosome 11, p11.2-q13. C1 inhibitor genes of patients from four hereditary angioneurotic edema kindreds do not have obvious deletions or rearrangements in the C1 inhibitor locus. A HgiAI DNA polymorphism, identified following the observation of sequence variants, will be useful as a linkage marker in studies of mutant C1 inhibitor genes.

Amino Acid Sequence↗

Monoclonal antibodies towards the fast inhibitor of tissue plasminogen activator from human plasma and serum.

Hybridoma cells were produced by fusing mouse myeloma cells (SP 2/0-Ag 14) with spleen cells from a Balb/c mouse, previously immunized with the partially purified complex between tissue plasminogen activator (t-PA) and its fast inhibitor from human plasma (serum). Screening with a radioimmunoassay revealed a number of hybridomas secreting antibodies directed towards the complex. Of these, about 1/3 reacted both with the complex and t-PA, whereas about 2/3 reacted only with the complex. Three of the latter hybridomas, producing antibodies directed towards the inhibitor-moiety in the complex have been cloned and the antibodies were studied in detail. PA-inhibitor activity in plasma or serum and t-PA/PA-inhibitor complex could be specifically adsorbed on all three insolubilized monoclonal antibodies (MC1, MC2 and MC3). None of the antibodies seems to be directed against structures of vital importance for the functional activity of the PA-inhibitor. In accordance with this finding the antibody with the highest avidity (MC1) reacts equally well with the PA-inhibitor alone or in complex with t-PA. A radioimmunoassay was developed with this antibody and significant displacement was obtained with samples with PA-inhibitor concentrations above 2 AU/mL. In 13 plasma samples with different levels of PA-inhibitory activity a significant correlation was obtained when comparing this activity with the PA-inhibitor antigen as measured with the radioimmunoassay (r = 0.88).

Antibodies, Monoclonal↗

Determination of soluble fibrin in plasma by a rapid and quantitative spectrophotometric assay.

A rapid, sensitive and quantitative spectrophotometric assay of soluble fibrin in plasma samples has been developed. The method is based on the principle that fibrin stimulates the activation of plasminogen by tissue plasminogen activator (t-PA). A sample containing fibrin is incubated with t-PA, plasminogen and a plasmin-sensitive chromogenic substrate. An increase in absorbance which is dependent on the fibrin concentration in the sample is obtained. In plasma samples an initial lag-phase, due to the presence of alpha 2-antiplasmin is observed. However, the change in A405 per square minute during the later part of the reaction was found to be proportional to the fibrin content and to generate linear standard curve intercepts at the origin. The detection limit of bathroxobin-digested fibrinogen added to plasma was about 5 nmol/L. Recovery experiments at 20 and 75 nmol/L levels in plasma samples from healthy individuals were excellent. The "within-run" variation (CV) was determined as 3.7%. The formation of fibrin after addition of minute amounts of thrombin to plasma could be monitored with the method. Plasma from 8 healthy individuals was found to contain about 9.2 +/- 1.9 nmol/L fibrin. Plasma samples from 46 patients with a suspected haemostatic disturbance had higher levels of soluble fibrin (53 +/- 62 nmol/L). Seven of the 46 samples had concentrations above 150 nmol/L.

Disseminated Intravascular Coagulation↗

Haemostatic function in myocardial infarction.

Coagulation factor VIII, von Willebrand factor, antithrombin, fibrinogen, plasminogen activator capacity, and inhibitors of fibrinolysis, including a recently discovered fast inhibitor of tissue plasminogen activator, were measured three to six months after myocardial infarction in 116 male and 32 female patients aged less than 45 and in 136 age and sex matched random controls. Plasma concentrations of fibrinogen and the fast inhibitor of tissue plasminogen activator were raised in male patients (with or without correction for orosomucoid levels, blood group distribution, tobacco and alcohol consumption, and weight/height index) and plasminogen activator capacity was reduced. In female patients the concentrations of factor VIII, von Willebrand factor, the fast inhibitor of tissue plasminogen activator, alpha 2-antiplasmin, and C1 inhibitor were significantly increased. The increase in factor VIII concentrations depended strongly on a persisting inflammatory response. Multivariate analysis indicated that a combination of fibrinogen and tissue plasminogen activator inhibitor concentrations gave the best independent discrimination between male patients and controls. For female patients the best combination was von Willebrand factor and tissue plasminogen activator inhibitor. Male patients with multiple vessel atheromatosis at coronary angiography had higher fibrinogen concentrations than those with atheromatosis of a single vessel. Atheromatosis was defined as sharp-edged, plaque-like, or irregular indentations, often multiple, into the vessel lumen without features suggesting fibromuscular hyperplasia.

Adult↗

Determination of tissue plasminogen activator and its "fast" inhibitor in plasma.

We describe efficient, accurate methods for specific determination of tissue plasminogen activator (t-PA, EC 3.4.21.31) and its "fast" inhibitor in plasma. In this coupled assay, a sample containing t-PA is incubated with plasminogen, a plasmin (EC 3.4.21.7) substrate of low Km and high Kcat, and fibrin as a stimulator. The inhibitor of t-PA is determined by incubating the sample with a known amount of t-PA in excess, then determining the residual t-PA. Both t-PA and t-PA inhibitor can be determined in many samples simultaneously within a few hours. These assays are modifications of procedures described by us (Clin Chim Acta 1983;127:279-88 and Thromb Res 1983;31:427-36). Their accuracy as assessed by analytical recovery of pure t-PA added to blood samples (91 +/- 4%) or of partly purified inhibitor added to plasma samples (102 +/- 10%) is satisfactory, as is their precision. For the t-PA assay the CV was 1.6% (within run) or 4.1% (between run). The corresponding values for the inhibitor assay were 4.5% (within run) or 8.4% (between run) if the inhibitor concentration exceeded 3 arb. units/mL.

Adult↗

Increased plasma levels of a rapid inhibitor of tissue plasminogen activator in young survivors of myocardial infarction.

Certain risk factors for myocardial infarction have been linked with disturbances in fibrinolytic activity. The recent development in our laboratory of new sensitive and specific methods for determination of tissue plasminogen activator (t-PA) activity and antigen, as well as the discovery of a new rapid inhibitor of this enzyme, enabled us to study fibrinolytic function in detail in a representative population of postinfarction patients. Seventy-one patients (62 men and 9 women) who had survived a myocardial infarction before the age of 45 were compared with 50 healthy subjects of similar age, three years after the infarction. Low t-PA activity after venous occlusion, mostly explained by high plasma levels of the t-PA inhibitor and to some extent by impaired release of t-PA from the vessel wall, was a frequent finding in the patients. The level of t-PA inhibitor was positively and significantly correlated with levels of serum triglycerides. Our data suggest that reduced fibrinolytic capacity due to increased plasma levels of a rapid inhibitor of t-PA may have pathogenetic importance in myocardial infarction, particularly in patients with hypertriglyceridemia.

Adult↗

Thrombolysis and fibrinolytic parameters during heparin treatment of deep vein thrombosis.

Thirty-nine patients with symptomatic, venographically verified deep vein thrombosis (DVT) were studied during treatment with heparin in order to investigate the correlation between the venographic changes and parameters of heparin therapy or fibrinolytic components. Venograms were scored with a 40-grade scale, and after one week a significant improvement with an average reduction of the thrombi of 17% was observed. No statistically significant correlation was found between reduction of thrombus size and duration of heparin treatment, total amount of heparin administered, mean levels of APTT, plasmin-alpha 2-antiplasmin complex (PAP), tissue plasminogen activator (t-PA) antigen or t-PA-inhibitor. Only a short history of the thrombus was significantly correlated to thrombolysis. The concentrations of PAP and t-PA-inhibitor were not influenced, while that of t-PA antigen showed a significant increase during heparin infusion. Even if statistically significant correlations were not obtained, the patients with pronounced thrombolytic effect had high PAP-levels. Furthermore, patients with high t-PA-inhibitor levels had no lysis. The results suggest, that also other factors than plasminogen dependent fibrinolysis are of importance for the thrombolytic effect.

Blood Coagulation Tests↗