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软骨II型、IX型、X型和XI型胶原蛋白对人滑膜胶原酶和中性粒细胞弹性蛋白酶的敏感性。

Susceptibility of cartilage collagens type II, IX, X, and XI to human synovial collagenase and neutrophil elastase.

作者信息

Gadher S J, Eyre D R, Duance V C, Wotton S F, Heck L W, Schmid T M, Woolley D E

机构信息

Department of Medicine, University Hospital, South Manchester, England.

出版信息

Eur J Biochem. 1988 Jul 15;175(1):1-7. doi: 10.1111/j.1432-1033.1988.tb14158.x.

Abstract

The action of purified rheumatoid synovial collagenase and human neutrophil elastase on the cartilage collagen types II, IX, X and XI was examined. At 25 degrees C, collagenase attacked type II and type X (45-kDa pepsin-solubilized) collagens to produce specific products reflecting one and at least two cleavages respectively. At 35 degrees C, collagenase completely degraded the type II collagen molecule to small peptides whereas a large fragment of the type X molecule was resistant to further degradation. In contrast, collagen type IX (native, intact and pepsin-solubilized type M) and collagen type XI were resistant to collagenase attack at both 25 degrees C and 35 degrees C even in the presence of excess enzyme. Mixtures of type II collagen with equimolar amounts of either type IX or XI did not affect the rate at which the former was degraded by collagenase at 25 degrees C. Purified neutrophil elastase, shown to be functionally active against soluble type III collagen, had no effect on collagen type II at 25 degrees C or 35 degrees C. At 25 degrees C collagen types IX (pepsin-solubilized type M) and XI were also resistant to elastase, but at 35 degrees C both were susceptible to degradation with type IX being reduced to very small peptides. Collagen type X (45-kDa pepsin-solubilized) was susceptible to elastase attack at 25 degrees C and 35 degrees C as judged by the production of specific products that corresponded closely with those produced by collagenase. Although synovial collagenase failed to degrade collagen types IX and XI, all the cartilage collagen species examined were degraded at 35 degrees C by conditioned culture medium from IL1-activated human articular chondrocytes. Thus chondrocytes have the potential to catabolise each cartilage collagen species, but the specificity and number of the chondrocyte-derived collagenase(s) has yet to be resolved.

摘要

研究了纯化的类风湿性滑膜胶原酶和人中性粒细胞弹性蛋白酶对软骨II型、IX型、X型和XI型胶原的作用。在25℃时,胶原酶作用于II型和X型(45 kDa胃蛋白酶可溶解的)胶原,分别产生反映一次和至少两次裂解的特定产物。在35℃时,胶原酶将II型胶原分子完全降解为小肽,而X型分子的一个大片段对进一步降解具有抗性。相比之下,IX型胶原(天然、完整和胃蛋白酶可溶解的M型)和XI型胶原在25℃和35℃时即使在存在过量酶的情况下也对胶原酶攻击具有抗性。II型胶原与等摩尔量的IX型或XI型胶原的混合物在25℃时不影响前者被胶原酶降解的速率。纯化的中性粒细胞弹性蛋白酶对可溶性III型胶原具有功能活性,但在25℃或35℃时对II型胶原无作用。在25℃时,IX型(胃蛋白酶可溶解的M型)和XI型胶原也对弹性蛋白酶具有抗性,但在35℃时两者都易被降解,IX型胶原被降解为非常小的肽。根据产生的与胶原酶产生的产物密切对应的特定产物判断,X型胶原(45 kDa胃蛋白酶可溶解的)在25℃和35℃时易受弹性蛋白酶攻击。尽管滑膜胶原酶未能降解IX型和XI型胶原,但所有检测的软骨胶原种类在35℃时都被IL-1激活的人关节软骨细胞的条件培养基降解。因此,软骨细胞有能力分解每种软骨胶原种类,但软骨细胞衍生的胶原酶的特异性和数量尚未明确。

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