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原胶原 C 端前肽在健康和疾病中的作用。

Roles of the procollagen C-propeptides in health and disease.

机构信息

Tissue Biology and Therapeutic Engineering Unit (UMR5305), CNRS/Université Claude Bernard Lyon 1, 69367 Lyon cedex 7, France

出版信息

Essays Biochem. 2019 Sep 13;63(3):313-323. doi: 10.1042/EBC20180049.

Abstract

The procollagen C-propeptides of the fibrillar collagens play key roles in the intracellular assembly of procollagen molecules from their constituent polypeptides chains, and in the extracellular assembly of collagen molecules into fibrils. Here we review recent advances in understanding the molecular mechanisms controlling C-propeptide trimerization which have revealed the importance of inter-chain disulphide bonding and a small number of charged amino acids in the stability and specificity of different types of chain association. We also show how the crystal structure of the complex between the C-propeptide trimer of procollagen III and the active fragment of procollagen C-proteinase enhancer-1 leads to a detailed model for accelerating release of the C-propeptides from procollagen by bone morphogenetic protein-1 and related proteinases. We then discuss the effects of disease-related missense mutations in the C-propeptides in relation to the sites of these mutations in the three-dimensional structure. While in general there is a good correlation between disease severity and structure-based predictions, there are notable exceptions, suggesting new interactions involving the C-propeptides yet to be characterized. Mutations affecting proteolytic release of the C-propeptides from procollagen are discussed in detail. Finally, the roles of recently discovered interaction partners for the C-propeptides are considered during fibril assembly and cross-linking.

摘要

纤维胶原的前胶原 C-肽在细胞内将前胶原分子的组成多肽链组装,以及在细胞外将胶原分子组装成原纤维方面起着关键作用。在这里,我们回顾了理解控制 C-肽三聚体形成的分子机制的最新进展,这些进展揭示了链间二硫键和少数带电氨基酸在不同类型链缔合的稳定性和特异性中的重要性。我们还展示了原胶原 III 的 C-肽三聚体与原胶原 C-蛋白酶增强子-1 的活性片段之间的复合物的晶体结构如何导致详细的模型,用于通过骨形态发生蛋白-1 和相关蛋白酶加速原胶原的 C-肽释放。然后,我们讨论了与三维结构中这些突变的位置相关的 C-肽中与疾病相关的错义突变的影响。虽然一般来说,疾病严重程度与基于结构的预测之间有很好的相关性,但也有明显的例外,这表明存在尚未被描述的涉及 C-肽的新相互作用。详细讨论了影响 C-肽从原胶原中蛋白水解释放的突变。最后,考虑了在原纤维组装和交联过程中最近发现的 C-肽相互作用伙伴的作用。

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