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动物细胞外基质的纳米结构:胶原蛋白和原纤蛋白同步辐射研究的机遇

Nanoarchitectures of the animal extracellular matrix: opportunities for synchrotron radiation studies on collagen and fibrillin.

作者信息

Wess T J, Cairns D E

机构信息

Biophysics Group, Department of Optometry and Vision Sciences, Cardiff University, Redwood Building, King Edward VII Avenue, Cardiff CF10 3NB, Wales, UK.

出版信息

J Synchrotron Radiat. 2005 Nov;12(Pt 6):751-7. doi: 10.1107/S0909049505012306. Epub 2005 Oct 18.

Abstract

The extracellular matrix comprises structures that support the architectural organization of virtually all animal tissues. Within this architecture, two classes of protein assemblies found as long slender fibrils (collagen and fibrillin) characterize the bulk of the extracellular matrix. In both classes of fibrous protein, the molecular organization within a fibril ensures that the properties of the individual molecules transcend to the nanostructural and mesoscopic levels of structural organization and thence the tissue itself. The composition of the fibrils, in conjunction with other biomolecules and their suprafibrillar architecture, facilitates the formation of tissues as diverse as skin, tendon, cornea ciliary zonules and aorta. Here the relative tear resistance, strength, transparency and optical properties are paramount for proper function. Many structural investigations of fibrous protein structure have relied heavily on the use of synchrotron radiation in order to elucidate molecular packing, primarily due to the distinct benefits that X-ray diffraction provides, such as minimal sample preparation, rapid data collection and in situ mechanical testing. In this paper, an overview of the investigations that have revealed different levels of molecular architecture in fibril-based tissues is presented. Emerging future technology and how this can be matched with the pressing questions in extracellular matrix biology are also discussed.

摘要

细胞外基质包含支持几乎所有动物组织结构组织的结构。在这种结构中,作为长而细的纤维(胶原蛋白和原纤维蛋白)发现的两类蛋白质组装体是细胞外基质的主要特征。在这两类纤维蛋白中,纤维内的分子组织确保了单个分子的特性传递到纳米结构和介观结构组织水平,进而传递到组织本身。纤维的组成,连同其他生物分子及其超纤维结构,促进了皮肤、肌腱、角膜小带和主动脉等多种组织的形成。在这里,相对抗撕裂性、强度、透明度和光学特性对于正常功能至关重要。纤维蛋白结构的许多结构研究严重依赖同步辐射的使用,以阐明分子堆积,这主要是由于X射线衍射提供的独特优势,如最少的样品制备、快速的数据收集和原位机械测试。本文概述了揭示基于纤维的组织中不同分子结构水平的研究。还讨论了新兴的未来技术以及如何将其与细胞外基质生物学中的紧迫问题相匹配。

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