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O Matsuo

Publications and source records attributed to O Matsuo.

At least 19 recordsLinked to original sources

Recombinant variants of tissue-type plasminogen activator containing amino acid substitutions in the finger domain.

Tissue-type plasminogen activator (t-PA) is a fibrin-specific agent which has been used to treat acute myocardial infarction. In an attempt to clarify the determinants for its rapid clearance in vivo and high affinity for fibrin clots, we produced five variants containing amino acid substitutions in the finger domain, at amino acid residues 7-9, 10-14, 15-19, 28-33, and 37-42. All the variants had a prolonged half-life and a decreased affinity for fibrin of various degrees. The 37-42 variant demonstrated about a 6-fold longer half-life with a lower affinity for fibrin. Human plasma clot lysis assay estimated the fibrinolytic activity of the 37-42 variant to be 1.4-fold less effective than that of the wild-type rt-PA. In a rabbit jugular vein clot lysis model, doses of 1.0 and 0.15 mg/kg were required for about 70% lysis in the wild-type and 37-42 variant, respectively. Fibrinogen was degraded only when the wild-type rt-PA was administered at a dose of 1.0 mg/kg. These findings suggest that the 37-42 variant can be employed at a lower dosage and that it is a more fibrin-specific thrombolytic agent than the wild-type rt-PA.

Amino Acids

Tissue-type plasminogen activator, type 1 plasminogen activator inhibitor and their complex in plasma with disseminated intravascular coagulation.

The levels of tissue-type plasminogen activator (t-PA), type 1 plasminogen activator inhibitor (PAI-1), and t-PA/PAI-1 complex antigens were analyzed in the plasma of disseminated intravascular coagulation (DIC) patients and healthy controls. Other fibrinolytic parameters such as the levels of plasminogen, alpha 2-antiplasmin (alpha 2-AP), plasmin/alpha 2-AP (PAP), and D-dimer were also estimated to clarify the fibrinolytic states in these plasmas. The antigens of t-PA, PAI-1, and t-PA/PAI-1 complex were found to increase from 8.5 +/- 4.3, 54.4 +/- 21.2, and 8.6 +/- 3.5 ng/ml in normal plasma to 36.4 +/- 25.1, 106.8 +/- 54.7, and 46.6 +/- 34.5 ng/ml in DIC plasma, respectively. The molar ratio of total t-PA to total PAI-1 was 1:6 and 1:3 in normal plasma and DIC plasma, respectively, indicating an enhanced fibrinolytic state in the DIC plasma. The DIC plasma revealed a significant consumption of plasminogen (62.1 +/- 27.8%), and alpha 2-AP (63.7 +/- 25.3%) and an increase in PAP (2.6 +/- 2.7 micrograms/ml) and D-dimer (3.9 +/- 10.7 micrograms/ml). These results suggest that the production and secretion of t-PA and PAI-1 from endothelial cells were enhanced in DIC, resulting in an increased t-PA/PAI-1 complex with dominant fibrinolytic activity.

Disseminated Intravascular Coagulation

Analysis of binding protein for tissue-type plasminogen activator in human endothelial cells.

The specific binding sites for tissue-type plasminogen activator (t-PA) were investigated in human umbilical vein endothelial cells. After adding 125I-t-PA (M.W. 70 kDa) to endothelial cells in suspension culture, the ligand was recovered from the cell extract after disuccinimidyl suberate treatment as a high molecular complex with M.W. of 90 kDa on SDS-PAGE. The complex reacted to only anti-t-PA IgG but not to anti-PAI-1 IgG immunoblot analysis, indicating a t-PA specific binding protein. 125I-t-PA ligand blotting of the cell extract revealed that the binding protein had M.W. 20 kDa. The binding of 125I-t-PA to endothelial cells was reduced in the presence of an excess amount of t-PA, plasminogen and 6-aminohexanoic acid, indicating that the binding sites were also recognized by plasminogen, and that t-PA and plasminogen were bound via lysine binding sites in the molecule. These findings suggest that human endothelial cells have specific t-PA binding molecules which may be expressed on the cell surface as t-PA receptors.

Aminocaproic Acid

On the molecular interactions between plasminogen-staphylokinase, alpha 2-antiplasmin and fibrin.

The molecular interactions between the plasminogen-staphylokinase complex, alpha 2-antiplasmin and fibrin were studied by measuring the effect of CNBr-digested fibrinogen on the inhibition rate of the plasminogen-staphylokinase complex by alpha 2-antiplasmin. The second-order rate constant for the inhibition of plasminogen-staphylokinase by alpha 2-antiplasmin was 2.7 +/- 0.3.10(6) M-1 s-1 (mean +/- S.D.; n = 7). Addition of CNBr-digested fibrinogen, but not of fibrinogen, resulted in a concentration-dependent reduction of the apparent inhibition rate constant, with a 50 percent reduction at a concentration of 5 nM CNBr-digested fibrinogen. The second-order rate constant for the inhibition of the low-Mr plasminogen-staphylokinase complex (plasminogen lacking the kringle structures comprising the lysine-binding sites) by alpha 2-antiplasmin was about 30-fold lower (9.3 +/- 0.7.10(4) M-1 s-1, mean +/- S.D.; n = 4) than that of plasminogen-staphylokinase and was not affected by addition of CNBr-digested fibrinogen. Inhibition of the plasminogen-staphylokinase complex by the chloromethylketone D-Val-Phe-Lys-Ch2Cl is 9-fold less efficient than that of plasmin (k2/Ki of 700 M-1 s-1 versus 6300 M-1 s-1). Our results confirm and establish that rapid inhibition of plasminogen-staphylokinase by alpha 2-antiplasmin requires the availability of the lysine-binding sites in the plasminogen moiety of the complex. Fibrin, but not fibrinogen, reduces the inhibition rate by alpha 2-antiplasmin by competition for interaction with the lysine-binding site. Protection of the plasminogen-staphylokinase complex bound to fibrin from rapid inhibition by alpha 2-antiplasmin thus appears to contribute to the fibrin-specificity of clot lysis with staphylokinase in a plasma milieu, by allowing preferential plasminogen activation at the fibrin surface, while the free complex is rapidly inhibited in plasma.

Amino Acid Chloromethyl Ketones

Tissue-type plasminogen activator and its inhibitor in human glomerulonephritis.

We carried out an immunohistochemical study of tissue-type plasminogen activator (PA) and urokinase-type PA, and their inhibitors, PA inhibitor-1 and PA inhibitor-2, using renal biopsy specimens obtained from 86 patients with various forms of glomerulonephritis. The controls were four normal renal tissue specimens. On immunofluorescent observation, granular staining for tissue-type PA was found to be distributed along the glomerular capillary walls. The fluorescence was weak in the normal renal tissue and occasionally intense in the tissues of patients with IgA nephritis, minimal change nephrotic syndrome, and lupus nephritis. PA inhibitor-1 was abundant in the glomerular epithelial cells and scarce in the mesangial area and glomerular capillary lumens of the normal renal tissues. This was confirmed by immunoelectron microscopy using gold staining. The fluorescence of PA inhibitor-1 was weaker in some specimens of nephritic tissues than in the normal renal tissues. Urokinase-type PA and PA inhibitor-2 were negative within the glomeruli in all the specimens. In the glomerulonephritic tissues which were fibrin deposition-positive, tissue-type PA expression in the glomeruli tended to be strong. An association between fibrin deposition and PA inhibitor-1 staining was not clear. These data suggest that expression of tissue-type PA in the glomeruli increases in association with fibrin deposition.

Fibrin

Cerebral plasminogen activator activity in spontaneously hypertensive stroke-prone rats.

BACKGROUND AND PURPOSE: In the spontaneously hypertensive stroke-prone rat, it is unclear whether plasminogen activator plays a role in the development of stroke. The present study was undertaken to investigate brain levels of plasminogen activator activity in spontaneously hypertensive stroke-prone rats and Wistar-Kyoto rats. METHODS: Plasminogen activator was purified from the brains of rats of both strains. The purification involved used ammonium sulfate precipitation, gel filtration, a zinc chelate-Sepharose column, and a concanavalin A-Sepharose column. Fraction I (0.15 M KCl-soluble fraction) and fraction II (2 M KCl plus 6 M urea-soluble fraction) were purified from both strains. RESULTS: Total plasminogen activator activity in the original homogenates for fractions I and II derived from spontaneously hypertensive stroke-prone rats was increased to twice the level found in Wistar-Kyoto rats. The final product purified from fractions I and II in both strains of rats revealed single bands of plasminogen activator activity on enzymatic analysis with a molecular weight of 72,000. The purified product had stronger S-2288 amidolytic activity than S-2444 amidolytic activity, and it also displayed fibrin-binding ability. CONCLUSIONS: The study demonstrated that there is an increased content of plasminogen activator in the brains of spontaneously hypertensive stroke-prone rats that might be related to the development of stroke.

Animals

Characterization of human tissue-type plasminogen activator variants with amino acid mutations in the kringle 1 domain.

Recombinant variants of tissue-type plasminogen activator (t-PA) were constructed by site-directed mutagenesis and expressed in Chinese hamster ovary cells. Five variants were designed to improve the function of t-PA by mutagenesis in the kringle 1 (K1) domain. The amino acids were replaced with the corresponding residues present in the kringle 2 (K2) domain of native t-PA. The t-PA mutants expressed were as follows: variant E94V.D95G with point mutations in Glu94----Val and Asp95----Gly; variant N115P.S119M, Asn115----Pro and Ser119----Met; variant P125A.R129Q.R13OS, Pro125----Ala, Arg129----Gln and Arg130----Ser; variant G161R.K162R.-S165W, Gly161----Arg, Lys162----Arg and Ser165----Trp; and variant N115P, Asn115----Pro, respectively. The half-life following intravenous bolus injection in rabbits was prolonged in all variants except P125A.R130S. This was particularly true for N115P.S119M. The kinetic parameters for plasminogen activation were improved in t-PA G161R.K162R.S165W which showed a 0.6-fold decrease in Km, and a 1.8-fold increase in Vmax, thus promoting a 2.7-fold increase in kcat/Km compared to native t-PA. For a similar degree of thrombolysis in the rabbit jugular vein thrombosis model, the thrombolytic activity of G161R.K162R.S165W, at the dose tested, was four-fold greater than that of native t-PA. Thus, the substitution of the amino acids in the K1 domain with those corresponding in the K2 domain significantly enhanced the enzymatic activity of t-PA and improved the plasma survival.

Amino Acid Sequence

Comparative fibrinolytic properties of staphylokinase and streptokinase in animal models of venous thrombosis.

The thrombolytic and pharmacokinetic properties of staphylokinase were compared with those of streptokinase in hamsters with a pulmonary embolus produced from human plasma or from hamster plasma, and in rabbits with a jugular vein blood clot produced from rabbit blood. In both models, a continuous intravenous infusion of staphylokinase and streptokinase over 60 min in hamsters or over 4 h in rabbits, induced dose-dependent progressive clot lysis in the absence of significant systemic activation of the fibrinolytic system. The results of thrombolytic potency (clot lysis at 30 min after the end of the infusion, in percent, versus dose administered, in mg/kg) were fitted with an exponentially transformed sigmoidal function (formula: see text) and the maximal percent clot lysis (c), the maximal rate of lysis (z = 1/4 ac.eb) and the dose at which the maximal rate of lysis is achieved (b) were determined. In hamsters with a pulmonary embolus produced from human plasma, streptokinase had a somewhat higher thrombolytic potency than staphylokinase, as revealed by a higher z value (2,100 +/- 1,100% lysis per mg/kg streptokinase administered versus 1,100 +/- 330% lysis per mg/kg for staphylokinase). In hamsters with a pulmonary embolus produced from hamster plasma, staphylokinase had a somewhat higher thrombolytic potency than streptokinase (z = 1,600 +/- 440 versus 1,200 +/- 370% lysis per mg/kg). Staphylokinase had a higher thrombolytic potency than streptokinase in rabbits,as revealed by a higher z-value (950 +/- 350% lysis per mg/kg staphylokinase administered versus 330 +/- 39% lysis per mg/kg for streptokinase) and a lower b-value (0.035 +/- 0.010 mg/kg staphylokinase versus 0.091 +/- 0.008 mg/kg for streptokinase.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

On the mechanism of fibrin-specific plasminogen activation by staphylokinase.

The mechanism of plasminogen activation by recombinant staphylokinase was studied both in the absence and in the presence of fibrin, in purified systems, and in human plasma. Staphylokinase, like streptokinase, forms a stoichiometric complex with plasminogen that activates plasminogen following Michaelis-Menten kinetics with Km = 7.0 microM and k2 = 1.5 s-1. In purified systems, alpha 2-antiplasmin inhibits the plasminogen-staphylokinase complex with k1(app) = 2.7 +/- 0.30 x 10(6) M-1 s-1 (mean +/- S.D., n = 12), but not the plasminogen-streptokinase complex. Addition of 6-aminohexanoic acid induces a concentration-dependent reduction of k1(app) to 2.0 +/- 0.17 x 10(4) M-1 s-1 (mean +/- S.D., n = 5) at concentrations greater than or equal to 30 mM, with a 50% reduction at a 6-aminohexanoic acid concentration of 60 microM. Staphylokinase does not bind to fibrin, and fibrin stimulates the initial rate of plasminogen activation by staphylokinase only 4-fold. Staphylokinase induces a dose-dependent lysis of a 0.12-ml 125I-fibrin-labeled human plasma clot submersed in 0.5 ml of citrated human plasma; 50% lysis in 2 h is obtained with 17 nM staphylokinase and is associated with only 5% plasma fibrinogen degradation. Corresponding values for streptokinase are 68 nM and more than 90% fibrinogen degradation. In the absence of a fibrin clot, 50% fibrinogen degradation in human plasma in 2 h requires 790 nM staphylokinase, but only 4.4 nM streptokinase. These results suggest the following mechanism for relatively fibrin-specific clot lysis with staphylokinase in a plasma milieu. In plasma in the absence of fibrin, the plasminogen-staphylokinase complex is rapidly neutralized by alpha 2-antiplasmin, thus preventing systemic plasminogen activation. In the presence of fibrin, the lysine-binding sites of the plasminogen-staphylokinase complex are occupied and inhibition by alpha 2-antiplasmin is retarded, thus allowing preferential plasminogen activation at the fibrin surface.

Antifibrinolytic Agents

Plasminogen activator inhibitor 1 in human carcinoma tissues.

The content of PAI-I was measured in carcinoma tissues from the stomach and colorectum divided macroscopically into 3 portions: the central part of the carcinoma, the marginal part of the carcinoma containing some normal mucosa, and the normal mucosa. Among these tissues, the highest levels of PAI-I antigen were found in the central part of the carcinoma. On the other hand, no PAI-I antigen or activity was observed in the normal mucosae. The PAI-I produced in the stomach and colorectal carcinoma tissues showed a non-lytic zone with a molecular weight of 54 kDa by reverse fibrin autography, and this 54-kDa band reacted with anti-PAI-I IgG on an immunoblotted nitrocellulose membrane by the avidin-biotin complex method. The contents of PAI-2 in the carcinoma tissues were not significantly different from those in the normal mucosa of the stomach and colorectum. In both the stomach and colorectal carcinomas, the highest value of u-PA/total PA (sum of u-PA and t-PA) was observed in the central part of the carcinoma, followed by the marginal part of the carcinoma, and was lowest in the normal mucosa. We conclude that increased levels of PAI-I in malignant tissue of the stomach and colorectal tract may serve to modulate extra-cellular proteolysis by u-PA.

Biomarkers, Tumor

Plasminogen activator inhibitor in stomach and colorectal carcinomas.

The content of PAI was measured in carcinoma tissues from the stomach and colorectum divided macroscopically into three portions: the central part of the carcinoma, the marginal part of the carcinoma containing some normal mucosa, and the normal mucosa. The PAI-1 antigen was highest in the central part of the carcinoma. On the other hand, no PAI-1 antigen or activity was observed in the normal mucosa. The PAI-1 in the carcinoma tissues showed a nonlytic zone with a molecular weight of 54 kd by reverse fibrin autography, and this 54 kd band reacted with anti-PAI-1 immunoglobulin G (IgG) on an immunoblotted nitrocellulose membrane. The contents of PAI-2 in the carcinoma tissues were not significantly different from those in the normal mucosa of the stomach and colorectum, respectively. In both the stomach and colorectal carcinomas, the highest value of u-PA/total PA (sum of u-PA and t-PA) was observed in the central part of the carcinoma, followed by the marginal part of the carcinoma, and was lowest in the normal mucosa. We conclude that increased levels of PAI-1 in malignant tissue of the stomach and colorectal tract may serve to modulate extracellular proteolysis by u-PA.

Adult

[Levels of tissue-type plasminogen activator and plasminogen activator inhibitor 1 in disseminated intravascular coagulation syndrome].

Since disseminated intravascular coagulation (DIC) may directly reflect the abnormal regulation of the fibrinolytic system by endothelial cells, we have measured the levels of tissue-type plasminogen activator (t-PA), type 1 PA inhibitor (PAI-1) and t-PA . PAI-1 complex which is formed as a result of interaction on the two factors, in the plasma of patients with DIC (n = 51) and healthy controls (n = 42). Antigens of t-PA, PAI-1 and t-PA . PAI-1 complex were significantly increased in the DIC plasma (36.4 +/- 25.1, 106.8 +/- 54.7 and 46.6 +/- 34.5 ng/ml, respectively) compared with those in normal plasma (8.5 +/- 4.3, 54.4 +/- 21.2 and 8.6 +/- 3.5 ng/ml, respectively). The molar ratio of t-PA to PAI-1 was much higher in the DIC plasma (1:3) than in normal plasma (1:6), which caused enhancement of the whole fibrinolytic activity in the DIC plasma. These changes resulted in significant consumption of plasminogen, alpha 2-plasmin inhibitor (alpha 2-PI) and a significant increase of plasmin . alpha 2-PI complex (PPI) and D-dimer. These results suggest that t-PA and its specific inhibitor PAI-1 both of which are secreted from endothelial cells into blood, play an important role on the progress of DIC.

Adult

Thrombolytic properties of staphylokinase.

We evaluated the properties of recombinant staphylokinase in comparison with those of tissue-type plasminogen activator (t-PA) and streptokinase (SK). The presence of fibrin(ogen) fragment FCB-2 in the reaction mixture increased plasminogen activation by staphylokinase more than 20-fold. Such characteristics are similar to those of t-PA. On the other hand, SK was not affected by the presence of FCB-2. The thrombolytic properties of staphylokinase were studied in a system consisting of a radioactive human plasma clot (125I-fibrinogen-labeled) suspended in the circulating citrated plasma. Significant thrombolysis (50% in 3 hours) was obtained with 2 micrograms/mL of staphylokinase and 4.45 micrograms/mL t-PA, as compared with 12 micrograms/mL for SK. The relative molar potency of staphylokinase, calculated from the molecular weight, was about two times more effective than that of SK, but about half of that of t-PA. Systemic fibrinolytic activation and fibrinogen breakdown was not observed with staphylokinase or t-PA, but was observed with SK. The thrombolytic efficiency of staphylokinase, which was calculated as the ratio of the degree of thrombolysis/the degree of fibrinogenolysis, was about five times greater than that of SK, and about half of that of t-PA. These findings suggest that staphylokinase has higher specific thrombolytic properties and lesser fibrinogenolytic properties than those of SK.

Amino Acid Sequence

Suppression of plasminogen activator inhibitor 1 release by fibrin from human umbilical vein endothelial cells.

The effect of fibrin stimulation on the fibrinolytic potential in cultured human umbilical vein endothelial cells (HUVEC) was investigated in the normal state and aged state. The amount of antigen of the two fibrinolytic factors, tissue-type plasminogen activator (t-PA) and plasminogen activator inhibitor 1 (PAI-1), was determined using ELISA and the ABC method, respectively. When a fibrin clot was overlayered on the normal HUVEC, the secretion of t-PA or PAI-1 from the HUVEC was greatly changed. That is, PAI antigen was decreased 3-fold and t-PA antigen increased slightly in the conditioned medium. On the other hand, when the aged HUVEC were stimulated by a fibrin clot, PAI antigen was increased 3-fold and t-PA antigen did not change in the conditioned medium. When the level of fibrinolytic activity in the conditioned medium was expressed as the molar ratio of PAI and t-PA (PAI/t-PA), the value in the fibrin-stimulated normal HUVEC was markedly reduced (a 3.5-fold decrease) when compared with that of the non-stimulated normal HUVEC, reflecting a profibrinolytic state. On the other hand, the value in the fibrin-stimulated aged HUVEC was markedly increased (a 5-fold increase) when compared with that of the non-stimulated aged HUVEC, reflecting an antifibrinolytic state. Actinomycin D- or cycloheximide-treated HUVEC showed no response to the fibrin stimulation. We conclude that the level of HUVEC-mediated fibrinolytic activity was regulated mainly by the production and secretion of PAI from the HUVEC to protect against the generation of thrombi. In the aged HUVEC, the regulatory mechanism acts in an opposite manner and a thrombotic process may be induced.

Cell Survival