人中性粒细胞中潜伏的胶原酶和明胶酶及其活化。

H Tschesche, V Knäuper, S Krämer, J Michaelis, R Oberhoff, H Reinke
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引用次数: 0

摘要

前胶原酶M(r) 85000 (SDS-PAGE)从灰褐色被毛中纯化到均匀,是一个稳定的单肽链,形成了整个前酶。前胶原酶可被各种蛋白酶激活,如胰蛋白酶、凝乳胰蛋白酶、组织蛋白酶G、钾溶酶和基质溶酶,也可被不同的汞化合物激活。潜伏酶被胰凝乳酶转化为活性形式的蛋白水解伴随着表观分子量降低到M(r) 64,000。这种活性酶缺少前79个n端残基。胰蛋白酶的激活可导致表观M(r) 70,000的潜伏中间体,缺少48个n端残基。因此,通过进一步切割22个n端残基,与胰蛋白酶长时间孵育产生活性酶。另一种潜伏中间体形式,表观M(r)为69,000,由原酶与白细胞弹性酶孵育后分别通过n端切割53或64个残基产生。然而,潜伏胶原酶不能被纤溶酶激活。不同汞化合物的活化最终形成活性胶原酶,表观M(r)为64,000。与原酶相比,活性胶原酶可以自溶产生活性M(r) 57,000和45,000个中间体和两个M(r) 28,000个片段。纯化潜伏白细胞明胶酶得到三种最终产物,表观M(r)为98,000,125,000和220,000 (SDS-PAGE);非减少)。还原后,只能检测到M(r) 98,000形式。潜在明胶酶可以像胶原酶一样被激活。在n端裂解后,胰蛋白酶的蛋白水解激活导致一个与白细胞胶原酶序列同源的活性明胶酶。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Latent collagenase and gelatinase from human neutrophils and their activation.

Procollagenase M(r) 85,000 (SDS-PAGE) was purified from buffy coat to homogeneity and represents a stable single polypeptide chain forming the entire proenzyme. The procollagenase can be activated by various proteinases, e.g. trypsin, chymotrypsin, cathepsin G, kallikrein and stromelysin and by different mercurial compounds. Proteolytic conversion of the latent enzyme to the active form by chymotrypsin is accompanied by a molecular weight reduction to an apparent M(r) 64,000. This active enzyme lacks the first 79 N-terminal residues. Activation by trypsin leads to a latent intermediate of apparent M(r) 70,000, lacking 48 N-terminal residues. The active enzyme is therefore generated upon prolonged incubation with trypsin by further cleavage of 22 N-terminal residues. Another latent intermediate form with apparent M(r) 69,000 is generated from the proenzyme upon incubation with leukocyte elastase by N-terminal cleavage of 53 or 64 residues, respectively. However, latent collagenase cannot be activated by plasmin. Activation by different mercurial compounds finally results in the formation of active collagenase with apparent M(r) 64,000. In contrast to the proenzyme, active collagenase can autolyse to give active M(r) 57,000 and 45,000 intermediates and two M(r) 28,000 fragments. Purification of latent leukocyte gelatinase yields three final products with apparent M(r) 98,000, 125,000 and 220,000 (SDS-PAGE; non reduced). Upon reduction, only the M(r) 98,000 form can be detected. The latent gelatinase can be activated in a similar manner as collagenase. Proteolytic activation by trypsin leads after N-terminal cleavage to an active gelatinase with sequence homology to leukocyte collagenase.

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