Gene/Protein Disease Symptom Drug Enzyme Compound
Pivot Concepts:   Target Concepts:
Query: EC:3.4.21.73 (urokinase-type plasminogen activator)
10,685 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

In inflammatory demyelinating diseases such as multiple sclerosis and experimental allergic encephalomyelitis, myelin destruction occurs in the vicinity of infiltrating mononuclear cells. The observations that myelin can be altered prior to phagocytosis and in areas not contiguous with inflammatory cells suggests a common mechanism for the initial stages of demyelination. Because stimulated macrophages secrete several neutral proteases, including plasminogen activator, we have investigated the possibility that myelinolysis could be mediated directly or indirectly by these enzymes. Isolated myelin was incubated with conditioned media from cultures of thioglycollate-stimulated mouse peritoneal macrophages in the presence and absence of plasminogen. Myelin appeared to be vulnerable to attack by at least two proteolytic activities secreted by the macrophages, a plasminogen-dependent and a plasminogen-independent activity; of the major proteins in myelin, the basic protein was most susceptible. The direct myelinolytic activity of macrophage-conditioned media was abolished by EDTA, and the plasminogen-dependent hydrolysis was abolished by p-nitrophenylguanidinobenzoate, an inhibitor of plasminogen activator and plasmin. These results suggest that the plasminogen activator released by the stimulated macrophages generated plasmin which hydrolyzed basic protein in intact myelin. This interpretation was confirmed by the observation that urokinase, a plasminogen activator, in the presence of plasminogen brought about marked degradation of basic protein in myelin. We propose that the release of neutral proteases by stimulated macrophages involved in cell-mediated reactions, and its amplification by the plasminogen-plasmin system, may play a significant role in the demyelination observed in several inflammatory demyelinating diseases.
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PMID:Degradation of basic protein in myelin by neutral proteases secreted by stimulated macrophages: a possible mechanism of inflammatory demyelination. 14 51

An inhibitor present in placenta and released in placental tissue culture forms specific complexes with each of two molecular forms of urokinase. Autoradiography demonstrated that the inhibitor shifted the electrophoretic position of 125I-labelled urokinase. It did not change the migration of diisopropyl-fluorophosphate-inactivated 125I-labelled urokinase, thereby indicating complex formation dependent on active serine site in urokinase. The inhibitor had a strong neutralizing effect on the plasminogen activators released from human ovarian carcinoma in tissue culture. The placental inhibitor might prove useful in inhibiting the fibrinolytic process necessary for proliferation of tumour vessels.
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PMID:An inhibitor from placenta specifically binds urokinase and inhibits plasminogen activator released from ovarian carcinoma in tissue culture. 15 55

When fibrinolytic activity in blood samples from various vessels was examined by the dilute-blood-clotlysis-time method (DBCLT), it was found to be noticeably high in the renal venous blood, though the activity was not detected by usual blood clotlysis time method. Plasmin was not detected in any blood samples examined, and the contents of fibrinogen and fibrin (or fibrinogen) breakdown products in the renal venous blood were not significantly different from those in the blood from other vessels. However, the high activity of plasminogen-activator was found only in the renal venous blood. Inhibitors on plasmin and plasminogen-activator (urokinase) were detected in almost the same amount in the blood samples from the various vessels. The amount of the inhibitors was sufficient to inhibit the plasminogen activation by urokinase, whose activity was equivalent to the plasminogen-activator activity in the renal venous blood. These results indicate that the high activity by DBCLT in the renal venous blood was derived from the high activity of plasminogen-activator, which was inactivated by inhibitors in undiluted blood. Plasminogen-activator may be released from the kidney to the blood, and immediately inactivated by the inhibitors in renal vein, and then diluted with systemic blood which contains little plasminogen-activator.
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PMID:[Releasing of plasminogen-activator from the kidney to the blood (author's transl)]. 15 61

Plasminogen activator of cell origin converts the plasma protein plasminogen to the proteolytic enzyme plasmin. Recently, high levels of activator have been observed to be particularly associated with tumours and transformed cells, and a functional relationship between plasminogen activation and malignancy has been proposed. In this paper we have attempted to induce transformation-like morphology and growth in a population of confluent quiescent cells in tissue culture, by inducing plasminogen activation. Untransformed 3T3 cells grown to confluence in plasminogen-free medium were subjected to plasminogen activation by the addition of urokinase and plasminogen or plasminogen-containing acid-treated serum, or plasmin. Under these conditions, the previously well ordered monolayers became disrupted, with multilayering, and discontinuities in the cell sheet, and the cells simultaneously grew to significantly higher densities. Removal of the plasmin-containing medium supplements effected some restoration of normal morphology. Thus, lhen plasmin was present 3T3 cells did not become transformed, but expresses transformation-like features. Well ordered monolayer morphology and quiescence in 3T3 cells at confluence are therefore dependent upon the absence of plasminogen activation.
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PMID:Plasminogen activation transforms the morphology of quiescent 3T3 cell monolayers and initiates growth. 15 38

Plasminogen was found to be present in bovine milk by crossreactivity between rabbit antiserum to plasminogen and casein prepared from milk by acid precipitation. This result was further supported by recovery of intact 125I-labeled plasminogen from rabbit milk after its intravenous injection. Freshly isolated whole bovine casein was observed to undergo slow autoproteolysis at 37 degrees C. Polyacrylamide gel electrophoresis revealed gradual disappearance of major caseins accompanied by appearance and increase in intensity of numerous electrophoretic bands. This autoproteolysis was inhibited by low concentrations of epsilon-aminocaproic acid (0.1 mM) and diisopropyl fluorophosphate (1 mM); catalytic amounts of urokinase accelerated the process. Autoproteolysis of isolated bovine beta-casein was shown by both urea and sodium dodecyl sulfate gel electrophoresis to result in formation of gamma 1- and gamma 2-caseins. Similar electrophoretic bands were formed when beta-casein was degraded by plasmin prepared from bovine blood serum. These results support the hypothesis that bovine plasmin occurs in milk and is identical to alkaline milk protease.
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PMID:Plasmin-mediated proteolysis of casein in bovine milk. 15 65

Plasminogen and plasminogen derivatives which contain lysine-binding sites were found to decrease the reaction rate between plasmin and alpha2-antiplasmin by competing with plasmin for the complementary site(s) in alpha2-antiplasmin. The dissocwation constant Kd for the interaction between intact plasminogen (Glu-plasminogen) and alpha2-antiplasmin is 4.0 microM but those for Lys-plasminogen or TLCK-plasmin are about 10-fold lower indicating a stronger interaction. The lysine-binding site(s) which is situated in triple-loops 1--3 in the plasmin A-chain is mainly responsible for the interaction with alpha2-antiplasmin. The interaction between Glu-plasminogen and alpha2-antiplasmin furthermore enhances the activation of Glu-plasminogen by urokinase to a comparable extent as 6-aminohexanoic acid, suggesting that similar conformational changes occur in the proenzyme after complex formation. Fibrinogen, fibrinogen digested with plasmin, purified fragment E and purified fragment D interfere with the reaction between plasmin and alpha2-antiplasmin by competing with alpha2-antiplasmin for the lysine-binding site(s) in the plasmin A-chain. The Kd obtained for these interactions varied between 0.2 microM and 1.4 microM; fragment E being the most effective. Thus the fibrinogen molecule contains several complementary sites to the lysine-binding sites located both in its NH2-terminal and COOH-terminal regions; these sites are to a large extent.
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PMID:On the specific interaction between the lysine-binding sites in plasmin and complementary sites in alpha2-antiplasmin and in fibrinogen. 15 66

Plasminogen-rich and plasminogen-poor radiolabeled human fibrin clots were inserted into large veins of baboons and stump-tailed monkeys. The thrombolytic effects of plasminogen activators (urokinase, streptokinase), and plasmin preparations with activator activity (streptokinase-activated human plasmin) and without activator activity (trypsin-activated porcine plasmin, Lysofibrin) were studied. Plasminogen-free and plasminogen-rich clots lysed at equal rates. Preparations with and without activator activity were equally effective as thrombolytic agents. Endogenous activation of plasminogen in the clot thus appears not to be the essential mechanism of thrombolysis. The exogenous pathway of enzyme adsorption to fibrin fibers seems to represent an important thrombolytic mechanism. Clot lysis was achieved with doses of fibrinolytic enzymes which produced little or no significant hematologic changes including hypofibrinogenemia and decreases of other blood coagulation factor levels.
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PMID:Mechanism of action of fibrinolytic enzymes in vivo. 15 24

Bovine plasma CIg, like human CIg, is a glycoprotein with a molecular weight of approximately 450,000 daltons and consists of two homologous subunits, the alpha and beta chains. These subunits are covalently linked through disulfide bridges in their carboxyl terminal domains. The carboxyl terminal regions are presumed to contain the fibrin-reactive transamidation site. The covalent incorporation of CIg into fibrin has been conclusively demonstrated by isolation of the S-carboxymethyl derivative of the CIg-fibrin-alpha chain complex and by determination of its terminal amino acid sequences. Cold-insoluble globulin has been shown to exert a stimulatory effect on the urokinase-mediated activation of bovine plasminogen to plasmin.
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PMID:Bovine plasma cold-insoluble globulin: gross structure and function. 15 11

Kabi human plasminogen and plasmin and two Behringwerke preparations of human plasminogen were examined for antigen content, purity and specific activity with the 1st International W.H.O. human plasmin reference preparation and with the plasminogen content of an 8 donor normal plasma pool. In relation to the plasminogen content of the preparation with the highest specific activity, the 8 donor plasma pool contained 0.186 mg/ml of plasminogen. This plasminogen on complete conversion to plasmin by streptokinase or urokinase corresponded to 4.35 International units/ml of plasmin as defined by the International reference preparation. Protein adsorption from highly purified plasminogens of low protein content induced variable underestimates of antigen and of biological activity. To prevent this it is recommended to issue these purified preparations in an inert carrier medium or alternatively to release these preparations with data pertaining to salt content and optical measurement prior to lyophilisation. When standards of high purity and low protein content are being examined for antigen and enzyme, it is recommended likewise that an inert protein carrier should be present in the diluent. Measurement of proactivator was considered to be unsuitable in reference to proactivator content of highly purified plasmin and plasminogen.
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PMID:The plasminogen content of commercial preparations and of normal donor plasma in relation to the plasmin content of the 1st international plasmin reference preparation. 15 12

Fibrin polymers formed from fibrinogen with thrombin in the presence of EDTA were suspended in a medium containing glucose, arabic gum and imidazole-HCl buffer and were sonicated at 20 kHz for 20 min to make a suspension containing fibrin particles of small size. The fibrin suspension was used as a substrate of plasmin for determining the enzymic activity of plasmin and plasminogen activated with urokinase. The kinetic study on the reaction of the fibrin particles with plasmin in the presence and the absence of fibrinogen revealed that Km value of fibrin for plasmin is 4.2 x 10(-7) M and the Ki value of fibrinogen is 1.2 x 10(-5) M.
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PMID:Fibrin suspension as a substrate fop plasmin: determination and kinetics. 16 68


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