Mallya S K, Mookhtiar K A, Van Wart H E
Department of Chemistry, Florida State University, Tallahassee 32306.
J Protein Chem. 1992 Feb;11(1):99-107. doi: 10.1007/BF01025096.
The kinetics of hydrolysis of rat tendon type I, bovine nasal septum type II, and human placental type III collagens by class I and class II Clostridium histolyticum collagenases (CHC) have been investigated. To facilitate this study, radioassays developed previously for the hydrolysis of these [3H]acetylated collagens by tissue collagenases have been adapted for use with the CHC. While the CHC are known to make multiple scissions in these collagens, the assays are shown to monitor the initial proteolytic events. The individual kinetic parameters kcat and KM have been determined for the hydrolysis of all three collagens by both class I and class II CHC. The specific activities of these CHC toward fibrillar type I and III collagens have also been measured. In contrast to human tissue collagenases, neither class of CHC exhibits a marked specificity toward any collagen type either in solution or in fibrillar form. The values of the kinetic parameters kcat and KM for the CHC are similar in magnitude to those of the human enzymes acting on their preferred substrates. Thus, the widely held view that the CHC are more potent collagenases is not strictly correct. As with the tissue collagenases, the local collagen structure at the cleavage sites is believed to play an important role in determining the rates of the reactions studied.
研究了溶组织梭菌I类和II类胶原酶(CHC)对大鼠肌腱I型、牛鼻中隔II型和人胎盘III型胶原的水解动力学。为便于此项研究,先前开发的用于组织胶原酶水解这些[3H]乙酰化胶原的放射分析方法已适用于CHC。虽然已知CHC会在这些胶原中进行多次切割,但这些分析方法显示可监测初始蛋白水解事件。已确定I类和II类CHC水解所有三种胶原的各个动力学参数kcat和KM。还测量了这些CHC对纤维状I型和III型胶原的比活性。与人体组织胶原酶不同,两类CHC在溶液或纤维状形式下对任何胶原类型均未表现出明显的特异性。CHC的动力学参数kcat和KM值在大小上与作用于其优选底物的人体酶相似。因此,普遍认为CHC是更强效的胶原酶这一观点并不完全正确。与组织胶原酶一样,切割位点处的局部胶原结构被认为在决定所研究反应的速率中起重要作用。