金属蛋白酶活化的生理机制。

G Murphy, R Ward, J Gavrilovic, S Atkinson
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摘要

前胶原酶和促泌素的激活机制可能在体内起作用已被研究。细胞单层被镀在胶原膜上的研究表明,纤溶蛋白和TIMP在这些过程中起着关键作用。在纤溶酶原存在的情况下,成纤维细胞单层可以快速激活促泌酶,其动力学与纤溶酶原-链激酶产生的纤溶酶相同。纤溶酶对前胶原酶的激活较差,尽管发生了11000的M(r)移位。即使在很低的摩尔比下,活性基质溶解素的存在也能使活性增强十倍。发现肿瘤细胞系分泌前胶原酶而不分泌基质溶酶依赖于基质溶酶和纤溶酶原的添加来影响胶原膜的降解。利用结缔组织细胞合成的其他纯化蛋白酶(包括内肽酶24.11、内肽酶-2、组织蛋白酶B和组织蛋白酶l)进行金属蛋白酶活化的生化研究。与纤溶酶相比,没有一种是特别有效的激活剂,但组织蛋白酶B被证明可以激活基质溶酶。通过细胞模型系统和纯化酶的生化研究,我们发现纤溶蛋白作为正常结缔组织细胞中主要的金属蛋白酶激活剂的作用仍然是无可挑战的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological mechanisms for metalloproteinase activation.

The activation of procollagenase and prostromelysin by mechanisms that might be functional in vivo has been investigated. Studies with cell monolayers plated onto collagen films have indicated key roles for plasmin and TIMP in these processes. Prostromelysin activation could be rapidly effected by fibroblast monolayers in the presence of plasminogen, with identical kinetics to plasminogen-streptokinase generated plasmin. Procollagenase activation by plasmin was shown to be poor, although an M(r) shift of 11,000 occurred. Activation was enhanced ten-fold by the presence of active stromelysin even at a very low molar ratio. A tumour cell line secreting procollagenase but not stromelysin was found to be dependent upon the addition of both stromelysin and plasminogen to effect degradation of collagen films. Biochemical studies of metalloproteinase activation were carried out using other purified proteinases synthesized by connective tissue cells including endopeptidase 24.11, endopeptidase-2, cathepsin B and cathepsin L. None was a particularly effective activator relative to plasmin, but cathepsin B was shown to activate stromelysin. By use of both cell model systems and biochemical studies of purified enzymes we have found that the role of plasmin as the major metalloproteinase activator in normal connective tissue cells remains unchallenged.

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