溶组织梭菌胶原酶:对一些旧酶的新认识。

K A Mookhtiar, H E Van Wart
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引用次数: 0

摘要

用字母alpha, beta, gamma, delta, epsilon, zeta和eta表示的7种胶原酶已从溶组织梭菌培养滤液中纯化至均匀性。这七种酶都是锌蛋白酶,需要钙离子才能发挥活性,并具有必需的羧基、酪氨酸基和赖氨酸基残基。根据这些酶在多肽链上的序列同源性,可以将它们分为两类,这是由它们的胰蛋白酶消化的比较所揭示的。通过比较它们对肽底物的特异性、它们与底物类似物抑制剂的相互作用以及它们对三螺旋胶原的攻击模式,也支持了这种分类。对这些酶的序列特异性进行了详细的研究。这两个类的特性是相似的,但又是互补的。这两类都具有内肽酶和三肽基羧肽酶活性,其中后者被认为有助于从胶原片段的c端去除Gly-X-Y三联体。这些胶原酶对三螺旋I型、II型和III型胶原的攻击模式在每一类酶中非常相似,但在两类酶中则不同。第一类酶首先水解这些胶原分子的三螺旋结构域末端附近的位点,而第二类酶在内部进行初始裂解。对这些初始裂解位点进行了测序,初步结果表明它们在亚胺酸含量或分布方面与组织胶原酶裂解位点不相似。已经测量了I型、II型和III型胶原的水解动力学参数,其量级与组织胶原酶相似。合成的肽底物-类似物抑制剂已经为这两类胶原酶制备,并被证明是过渡态类似物抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clostridium histolyticum collagenases: a new look at some old enzymes.

Seven collagenases denoted by the letters alpha, beta, gamma, delta, epsilon, zeta and eta have been purified to homogeneity from the culture filtrate of Clostridium histolyticum. All seven enzymes are zinc proteinases that require calcium ions for activity and have essential carboxyl, tyrosyl and lysyl residues. These enzymes can be divided into two classes on the basis of the sequence homologies in their polypeptide chains, as revealed from a comparison of their tryptic digests. This division into classes is also supported by a comparison of their specificities toward peptide substrates, their interaction with substrate-analog inhibitors, and their mode of attack of triple helical collagens. The sequence specificities of these enzymes have been studied in detail. The specificities of the two classes are similar, but complementary. Both classes exhibit both endopeptidase and tripeptidylcarboxypeptidase activities, where the latter is thought to facilitate removal of Gly-X-Y triplets from the C-terminus of collagen fragments. The mode of attack of these collagenases on triple helical type I, II and III collagens is very similar for the enzymes within each class, but different for the two classes. The class I enzymes first hydrolyze loci near the ends of the triple helical domains of these collagen molecules, while the class II enzymes make their initial cleavages in the interior. The sites of these initial cleavages are being sequenced and preliminary results indicate that they do not resemble the tissue collagenase cleavage site with respect to either their imino acid content or distribution. The kinetic parameters for the hydrolysis of type I, II and III collagens have been measured and are similar in magnitude to those for the tissue collagenases. Synthetic peptide substrate-analog inhibitors have been prepared for both classes of collagenases and shown to be transition-state-analog inhibitors.

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