Nagase H, Suzuki K, Enghild J J, Salvesen G
Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City 66103.
Biomed Biochim Acta. 1991;50(4-6):749-54.
Two zymogens of matrix metalloproteinases (MMPs), proMMP-1 (tissue procollagenase) and proMMP-3 (prostromelysin) were isolated from the culture medium of human rheumatoid synovial fibroplasts and their activation mechanisms by proteinases and 4-aminophenylmercuric acetate (APMA) were studied by kinetic and sequence analyses. Both zymogens were activated by unique stepwise activation mechanisms through which sequential processing events occur in the propeptide regions. The initial cleavage sites attacked by activator proteinases are located in the middle of the propeptides at Glu33-Lys-Arg-Arg-Asn37 in proMMP-1 and Phe34-Val-Arg-Arg-Lys-Asp39 in proMMP-3. The initial products of proMMP-1 generated by proteinases then undergo further autocleavage of the Thr64-Leu65 bond. The treatment of proMMP-1 and proMMP-3 with APMA results in the intramolecular cleavage of the Val67-Met68 and Glu68-Val69 bonds, respectively. The removal of a portion of propeptides results in conformational changes around the Gln80-Phe81 and His82-Phe83 bonds in respective intermediates of MMP-1 and MMP-3 and render them to rapid specific cleavage by MMP-3 to generate stable, fully active enzymes.
从人类风湿性滑膜成纤维细胞的培养基中分离出基质金属蛋白酶(MMPs)的两种酶原,即前MMP-1(组织原胶原酶)和前MMP-3(原基质溶解素),并通过动力学和序列分析研究了蛋白酶和4-氨基苯汞乙酸盐(APMA)对它们的激活机制。两种酶原均通过独特的逐步激活机制被激活,在该机制中,前肽区域会发生连续的加工事件。激活蛋白酶攻击的初始切割位点位于前肽中部,前MMP-1中为Glu33-Lys-Arg-Arg-Asn37,前MMP-3中为Phe34-Val-Arg-Arg-Lys-Asp39。蛋白酶产生的前MMP-1的初始产物随后会经历Thr64-Leu65键的进一步自切割。用APMA处理前MMP-1和前MMP-3分别导致Val67-Met68和Glu68-Val69键的分子内切割。去除一部分前肽会导致MMP-1和MMP-3各自中间体中Gln80-Phe81和His82-Phe83键周围的构象变化,并使它们被MMP-3快速特异性切割,从而产生稳定的、完全活性的酶。