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胶原纤维中的径向堆积、有序和无序

Radial packing, order, and disorder in collagen fibrils.

作者信息

Hulmes D J, Wess T J, Prockop D J, Fratzl P

机构信息

Department of Biochemistry, University of Edinburgh, United Kingdom.

出版信息

Biophys J. 1995 May;68(5):1661-70. doi: 10.1016/S0006-3495(95)80391-7.

Abstract

Collagen fibrils resemble smectic, liquid crystals in being highly ordered axially but relatively disordered laterally. In some connective tissues, x-ray diffraction reveals three-dimensional crystallinity in the molecular packing within fibrils, although the continued presence of diffuse scatter indicates significant underlying disorder. In addition, several observations from electron microscopy suggest that the molecular packing is organized concentrically about the fibril core. In the present work, theoretical equatorial x-ray diffraction patterns for a number of models for collagen molecular packing are calculated and compared with the experimental data from tendon fibrils. None of the models suggested previously can account for both the crystalline Bragg peaks and the underlying diffuse scatter. In addition, models in which any of the nearest-neighbor, intermolecular vectors are perpendicular to the radial direction are inconsistent with the observed radial orientation of the principal approximately 4 nm Bragg spacing. Both multiple-start spiral and concentric ring models are devised in which one of the nearest-neighbor vectors is along the radial direction. These models are consistent with the radial orientation of the approximately 4 nm spacing, and energy minimization results in radially oriented crystalline domains separated by disordered grain boundaries. Theoretical x-ray diffraction patterns show a combination of sharp Bragg peaks and underlying diffuse scatter. Close agreement with the observed equatorial diffraction pattern is obtained. The concentric ring model is consistent with the observation that the diameters of collagen fibrils are restricted to discrete values.

摘要

胶原纤维类似于近晶型液晶,其轴向高度有序而横向相对无序。在一些结缔组织中,X射线衍射显示纤维内分子堆积具有三维结晶性,尽管持续存在的漫散射表明存在显著的潜在无序。此外,电子显微镜的一些观察结果表明,分子堆积围绕纤维核心呈同心排列。在本研究中,计算了多种胶原分子堆积模型的理论赤道X射线衍射图谱,并与肌腱纤维的实验数据进行了比较。先前提出的模型均无法同时解释结晶布拉格峰和潜在的漫散射。此外,任何最近邻分子间矢量垂直于径向方向的模型都与观察到的约4nm主要布拉格间距的径向取向不一致。设计了多起始螺旋模型和同心环模型,其中一个最近邻矢量沿径向方向。这些模型与约4nm间距的径向取向一致,能量最小化导致由无序晶界分隔的径向取向结晶域。理论X射线衍射图谱显示出尖锐布拉格峰和潜在漫散射的组合。与观察到的赤道衍射图谱取得了密切一致。同心环模型与胶原纤维直径限于离散值的观察结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cfa/1282067/0bce9b212a83/biophysj00061-0032-a.jpg

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