Murphy G, Cockett M I, Stephens P E, Smith B J, Docherty A J
Strangeways Research Laboratory, Worts Causeway, Cambridge, U.K.
Biochem J. 1987 Nov 15;248(1):265-8. doi: 10.1042/bj2480265.
The latent forms of stromelysin and collagenase from human gingival fibroblasts were purified to homogeneity. These latent proenzymes underwent serial small reductions in Mr upon activation by treatment with either 4-aminophenylmercuric acetate or trypsin. Similar shifts in Mr and activation kinetics were observed upon identical treatments of either recombinant prostromelysin or procollagenase. Prostromelysin showed a lag between activation and Mr fall, suggesting an initial activation by conformational change. Collagenase activity was enhanced up to 12-fold by either natural or recombinant stromelysin in the presence of trypsin or 4-aminophenylmercuric acetate. Stromelysin caused a further apparent decrease in the Mr of procollagenase. Since these important connective-tissue-degrading enzymes are usually co-ordinately produced by cells, a cascade mechanism is proposed in which collagenase is activated by stromelysin.
人牙龈成纤维细胞中的基质溶解素和胶原酶的潜伏形式被纯化至同质。这些潜伏的酶原在用乙酸4-氨基苯汞或胰蛋白酶处理激活后,其相对分子质量(Mr)会连续小幅降低。对重组前基质溶解素或前胶原酶进行相同处理时,观察到了类似的Mr变化和激活动力学。前基质溶解素在激活和Mr下降之间存在滞后现象,表明最初是通过构象变化激活的。在胰蛋白酶或乙酸4-氨基苯汞存在的情况下,天然或重组基质溶解素可使胶原酶活性增强至12倍。基质溶解素使前胶原酶的Mr进一步明显降低。由于这些重要的结缔组织降解酶通常由细胞协同产生,因此提出了一种级联机制,其中胶原酶由基质溶解素激活。