胶原原纤维的形态和功能。

T J Wess
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引用次数: 151

摘要

细胞外基质中的大多数胶原蛋白呈纤维状,具有细长的细丝,每根细丝的特征约为67?纳米D-repeat。在这里,它们提供了许多组织的刚性弹性部分,其中胶原蛋白三螺旋的固有强度通过许多等级水平转化,赋予该组织特定的机械性能。许多类型的胶原蛋白具有重要的结构作用,包括原纤维的核心或装饰原纤维表面以增强功能。描述了纤维下和纤维上结构(如微原纤维)、横向晶体和液晶排序、纤维间相互作用和纤维束的结构。纤维表面被认为是包含许多不同类型的胶原蛋白和其他分子物种,特别是蛋白聚糖之间密切相互作用的区域。讨论了纤维表面分子形态之间的相互作用,讨论了它们对纤维直径调节的贡献以及它们在纤维间相互作用中的作用。
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Collagen fibril form and function.

The majority of collagen in the extracellular matrix is found in a fibrillar form, with long slender filaments each displaying a characteristic approximately 67?nm D-repeat. Here they provide the stiff resilient part of many tissues, where the inherent strength of the collagen triple helix is translated through a number of hierarchical levels to endow that tissue with its specific mechanical properties. A number of collagen types have important structural roles, either comprising the core of the fibril or decorating the fibril surface to give enhanced functionality. The architecture of subfibrillar and suprafibrillar structures (such as microfibrils), lateral crystalline and liquid crystal ordering, interfibrillar interactions, and fibril bundles is described. The fibril surface is recognized as an area that contains a number of intimate interactions between different collagen types and other molecular species, especially the proteoglycans. The interplay between molecular forms at the fibril surface is discussed in terms of their contribution to the regulation of fibril diameter and their role in interfibrillar interactions.

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