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胶原蛋白结构:老“狗”学新招

Collagen structure: new tricks from a very old dog.

作者信息

Bella Jordi

机构信息

Faculty of Life Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, U.K.

出版信息

Biochem J. 2016 Apr 15;473(8):1001-25. doi: 10.1042/BJ20151169.

Abstract

The main features of the triple helical structure of collagen were deduced in the mid-1950s from fibre X-ray diffraction of tendons. Yet, the resulting models only could offer an average description of the molecular conformation. A critical advance came about 20 years later with the chemical synthesis of sufficiently long and homogeneous peptides with collagen-like sequences. The availability of these collagen model peptides resulted in a large number of biochemical, crystallographic and NMR studies that have revolutionized our understanding of collagen structure. High-resolution crystal structures from collagen model peptides have provided a wealth of data on collagen conformational variability, interaction with water, collagen stability or the effects of interruptions. Furthermore, a large increase in the number of structures of collagen model peptides in complex with domains from receptors or collagen-binding proteins has shed light on the mechanisms of collagen recognition. In recent years, collagen biochemistry has escaped the boundaries of natural collagen sequences. Detailed knowledge of collagen structure has opened the field for protein engineers who have used chemical biology approaches to produce hyperstable collagens with unnatural residues, rationally designed collagen heterotrimers, self-assembling collagen peptides, etc. This review summarizes our current understanding of the structure of the collagen triple helical domain (COL×3) and gives an overview of some of the new developments in collagen molecular engineering aiming to produce novel collagen-based materials with superior properties.

摘要

胶原蛋白三螺旋结构的主要特征于20世纪50年代中期通过肌腱的纤维X射线衍射推导得出。然而,所得模型仅能提供分子构象的平均描述。大约20年后,随着具有胶原样序列的足够长且均一的肽的化学合成,取得了关键进展。这些胶原模型肽的可得性导致了大量的生物化学、晶体学和核磁共振研究,彻底改变了我们对胶原蛋白结构的理解。来自胶原模型肽的高分辨率晶体结构提供了关于胶原蛋白构象变异性、与水的相互作用、胶原蛋白稳定性或中断效应的大量数据。此外,与受体或胶原结合蛋白结构域复合的胶原模型肽结构数量大幅增加,阐明了胶原识别的机制。近年来,胶原蛋白生物化学已突破天然胶原蛋白序列的界限。对胶原蛋白结构的详细了解为蛋白质工程师开辟了领域,他们利用化学生物学方法生产具有非天然残基的超稳定胶原蛋白、合理设计的胶原异源三聚体、自组装胶原肽等。本综述总结了我们目前对胶原三螺旋结构域(COL×3)结构的理解,并概述了胶原蛋白分子工程中的一些新进展,旨在生产具有优异性能的新型胶原基材料。

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