Serine protease and metallo protease cascade systems involved in pericellular proteolysis

James P. Quigley , Mitchell B. Berkenpas , Ronald T. Aimes , Jinq May Chen
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引用次数: 23

Abstract

Cultures of transformed fibroblasts actively involved in extracellular matrix degradation have been examined for initial activation of serine and metallo protease cascade systems. Rous sarcoma virus transformed chick embryo fibroblasts (RSVCEF), in contrast to transformed mammalian cells, produce active, two chain urokinase-type plasminogen activator (tcu-PA). Active tcu-PA is found in serum-free, plasmin-free conditioned medium from RSVCEF cultures as determined by two independent methods, immunoprecipitation and differential DFP sensitivity. RSVCEF cultures synthesize and secrete inactive, single chain uPA (scu-PA) which is converted to tcu-PA in a time dependent manner by a catalytic mechanism that appears to involve a functioning uPA receptor on the surface of intact cells. The enzyme activity responsible for this conversion may represent the initiating catalytic event in the PA/plasminogen serine protease cascade system.

A 70 kDa prometalloprotease capable of degrading denatured collagen following its activation also is significantly elevated in RSVCEF cultures over that of normal CEF. Trace amounts of the active 62 kDa form of the metalloprotease (gelatinase) is found in the transformed RSVCEF cultures indicating that these cultures produce a natural activator of the prometalloprotease. Plasmin and/or PA do not appear to be the activator of this enzyme as determined by indirect inhibition assays and direct assays employing purified enzymes. The possible central position of pro PA and the 70 kDa prometalloprotease in an interacting, complex protease cascade system involved in extracellular matrix degradation is discussed.

丝氨酸蛋白酶和金属蛋白酶级联系统参与细胞周围蛋白水解
积极参与细胞外基质降解的转化成纤维细胞的培养已经检查了丝氨酸和金属蛋白酶级联系统的初始激活。劳斯肉瘤病毒转化的鸡胚成纤维细胞(RSVCEF)与转化的哺乳动物细胞相比,可产生活性的双链尿激酶型纤溶酶原激活物(tcu-PA)。通过免疫沉淀和差分DFP敏感性两种独立的方法,在RSVCEF培养的无血清、无plasmin的条件培养基中发现了活性tcu-PA。RSVCEF培养物合成和分泌无活性的单链uPA (scu-PA),通过一种催化机制以一种时间依赖的方式转化为tcu-PA,这种机制似乎涉及完整细胞表面上的功能性uPA受体。负责这种转化的酶活性可能代表PA/纤溶酶原丝氨酸蛋白酶级联系统中的启动催化事件。激活后能够降解变性胶原蛋白的70 kDa前金属蛋白酶在RSVCEF培养物中也比正常CEF显著升高。在转化的RSVCEF培养物中发现微量的活性62 kDa形式的金属蛋白酶(明胶酶),表明这些培养物产生天然的原金属蛋白酶活化剂。通过间接抑制试验和使用纯化酶的直接试验确定,纤溶酶和/或PA似乎不是该酶的激活剂。在一个相互作用的复杂蛋白酶级联系统中,原PA和70 kDa的前金属蛋白酶可能处于中心位置,涉及细胞外基质降解。
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