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溶组织梭菌胶原酶在I型、II型和III型胶原蛋白中的高反应性位点鉴定:与局部三螺旋稳定性缺乏相关性

Identification of Clostridium histolyticum collagenase hyperreactive sites in type I, II, and III collagens: lack of correlation with local triple helical stability.

作者信息

French M F, Bhown A, Van Wart H E

机构信息

Department of Chemistry, Florida State University, Tallahassee 32306.

出版信息

J Protein Chem. 1992 Feb;11(1):83-97. doi: 10.1007/BF01025095.

Abstract

The class I and II Clostridium histolyticum collagenases (CHC) have been used to identify hyperreactive sites in rat type I, bovine type II, and human type III collagens. The class I CHC attack both collagens at loci concentrated in the N-terminal half of these collagens starting with the site closest to the N-terminus. The class II CHC initiate collagenolysis by attacking both collagens in the interior to produce a mixture of C-terminal 62,000 and a N-terminal 36,000 fragments. Both fragments are next shortened by removal of a 3000 fragment. These results are very similar to those reported earlier for the hydrolysis of rat type I collagen by these CHC, indicating that the three collagens share many hyperreactive sites. Similar reactions carried out with the respective gelatins show that they are cleaved at many sites at approximately the same rate. Thus, the hyperreactivity of the sites identified must be attributed to their environment in the native collagens. N-terminal sequencing of the fragments produced in these reactions has allowed the identification of 16 cleavage sites in the alpha 1(I), alpha 2(I), alpha 1(II), and alpha 1(III) collagen chains. An analysis of the triple helical stabilities of these cleavage site regions as reflected by their imino acid contents fails to yield a correlation between reactivity and triple helical stability. The existence of these hyperreactive CHC cleavage sites suggests that type I, II, and III collagens contain regions that have specific nontriple helical conformations. The sequence of these sites presented here now makes it possible to investigate these conformations by computational and peptide mimetic techniques.

摘要

溶组织梭菌I类和II类胶原酶(CHC)已被用于鉴定大鼠I型、牛II型和人III型胶原中的高反应性位点。I类CHC从最靠近N端的位点开始,在这些胶原N端一半集中的位点攻击两种胶原。II类CHC通过攻击两种胶原内部来启动胶原分解,产生C端62000片段和N端36000片段的混合物。接下来,通过去除一个3000片段,这两个片段都被缩短。这些结果与之前报道的这些CHC水解大鼠I型胶原的结果非常相似,表明这三种胶原共享许多高反应性位点。用各自的明胶进行的类似反应表明,它们在许多位点以大致相同的速率被切割。因此,所鉴定位点的高反应性必须归因于它们在天然胶原中的环境。对这些反应中产生的片段进行N端测序,已鉴定出α1(I)、α2(I)、α1(II)和α1(III)胶原链中的16个切割位点。通过它们的亚氨基酸含量反映的这些切割位点区域的三螺旋稳定性分析,未能得出反应性与三螺旋稳定性之间的相关性。这些高反应性CHC切割位点的存在表明,I型、II型和III型胶原含有具有特定非三螺旋构象的区域。这里呈现的这些位点的序列现在使得通过计算和肽模拟技术来研究这些构象成为可能。

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