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软骨研究的最新进展:胶原蛋白II/IX/XI异质纤维网络的基质生物学

Recent developments in cartilage research: matrix biology of the collagen II/IX/XI heterofibril network.

作者信息

Eyre D R, Wu J J, Fernandes R J, Pietka T A, Weis M A

机构信息

University of Washington, Orthopaedic Research Laboratories, Box 356500, Seattle 98195-6500, USA.

出版信息

Biochem Soc Trans. 2002 Nov;30(Pt 6):893-9. doi: 10.1042/bst0300893.

Abstract

Research on cartilage is intensifying as efforts expand to discover disease-modifying drugs to treat or prevent osteoarthritis. Proteolytic damage to the collagen fabric of cartilage is a critical, and probably early, component of the pathogenesis of degenerative joint disease. Here we summarize recent findings on the unique heteromeric structure of cartilage collagen fibrils, including the key role of collagen IX, a covalently bonded fibril-adapter molecule. A highly specific pattern of cross-linking sites that involves all three component gene products strongly suggests that collagen IX has evolved to function as an interfibrillar network-bonding agent. This is supported from the genetic evidence that mutations in all three collagen IX genes can produce a phenotype in which cartilage matrix integrity and early-onset osteoarthritis are a feature. From the structure of the cartilage collagen heteropolymer we also predict a pivotal role for telopeptide (non-triple-helical) proteolytic cleavages in the remodelling and degradation of collagen fibrils.

摘要

随着人们为发现治疗或预防骨关节炎的疾病修饰药物而不断加大努力,对软骨的研究也在不断深入。软骨胶原纤维结构的蛋白水解损伤是退行性关节病发病机制中的一个关键且可能较早出现的组成部分。在此,我们总结了软骨胶原纤维独特异聚体结构的近期研究发现,包括IX型胶原(一种共价结合的纤维适配分子)的关键作用。一种涉及所有三种组成基因产物的高度特异性交联位点模式强烈表明,IX型胶原已进化为一种纤维间网络结合剂。这一观点得到了遗传学证据的支持,即所有三个IX型胶原基因的突变均可产生以软骨基质完整性和早发性骨关节炎为特征的表型。从软骨胶原杂聚物的结构中,我们还预测端肽(非三螺旋)蛋白水解切割在胶原纤维的重塑和降解中起关键作用。

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