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胶原纤维中的准六边形分子排列。

Quasi-hexagonal molecular packing in collagen fibrils.

作者信息

Hulmes D J, Miller A

出版信息

Nature. 1979;282(5741):878-80. doi: 10.1038/282878a0.

Abstract

Collagen molecules in native 66.8 nm (D) periodic fibrils are widely believed to be assembled into discrete, rope-like substructures, or microfibrils. Several types of microfibril have been proposed (2, 4, 5, 7- and 8-stranded) mainly on the basis of information contained in the medium angle X-ray diffraction patterns of native tendon fibres. These patterns show a series of equatorial and near-equatorial Bragg reflections which indicate that the collagen molecules are arranged on a three-dimensional crystalline lattice. The 4-stranded, 5-stranded and 8-stranded microfibrils are D-periodic with approximate diameter 3.8 nm, and these and the 2-stranded model are supposed to be packed on a three-dimensional lattice whose basal unit cell, (approximately) perpendicular to the fibril axis, is tetragonal (or quasi-tetragonal)with side a, a square root 2 or 2a, where a is approximately 3.8 nm. In this paper we describe a re-interpretation of the X-ray data which leads to a new model for the crystalline regions of the fibril, based on quasi-hexagonal molecular packing without microfibrillar sub-structures, and hence having the character of a molecular crystal.

摘要

人们普遍认为,天然66.8纳米(D)周期原纤维中的胶原蛋白分子组装成离散的、绳状的亚结构,即微原纤维。主要基于天然肌腱纤维的中角X射线衍射图谱中包含的信息,已提出了几种类型的微原纤维(2、4、5、7和8股)。这些图谱显示出一系列赤道和近赤道布拉格反射,这表明胶原蛋白分子排列在三维晶格上。4股、5股和8股微原纤维是D周期的,直径约为3.8纳米,这些以及2股模型被认为堆积在一个三维晶格上,其基本晶胞(近似)垂直于原纤维轴,是边长为a、a√2或2a的四方(或准四方)晶胞,其中a约为3.8纳米。在本文中,我们描述了对X射线数据的重新解释,这导致了一种基于准六边形分子堆积且无微原纤维亚结构的原纤维晶体区域新模型,因此具有分子晶体的特征。

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