首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Corneal collagen fibril structure in three dimensions: Structural insights into fibril assembly mechanical properties and tissue organization
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Corneal collagen fibril structure in three dimensions: Structural insights into fibril assembly mechanical properties and tissue organization

机译:角膜胶原纤维结构的三个方面:对纤维组件机械性能和组织组织的结构见解

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摘要

The ability of the cornea to transmit light while being mechanically resilient is directly attributable to the formation of an extracellular matrix containing orthogonal sheets of collagen fibrils. The detailed structure of the fibrils and how this structure underpins the mechanical properties and organization of the cornea is understood poorly. In this study, we used automated electron tomography to study the three-dimensional organization of molecules in corneal collagen fibrils. The reconstructions show that the collagen molecules in the 36-nm diameter collagen fibrils are organized into microfibrils (≈4-nm diameter) that are tilted by ≈15° to the fibril long axis in a right-handed helix. An unexpected finding was that the microfibrils exhibit a constant-tilt angle independent of radial position within the fibril. This feature suggests that microfibrils in concentric layers are not always parallel to each other and cannot retain the same neighbors between layers. Analysis of the lateral structure shows that the microfibrils exhibit regions of order and disorder within the 67-nm axial repeat of collagen fibrils. Furthermore, the microfibrils are ordered at three specific regions of the axial repeat of collagen fibrils that correspond to the N- and C-telopeptides and the d-band of the gap zone. The reconstructions also show macromolecules binding to the fibril surface at sites that correspond precisely to where the microfibrils are most orderly.
机译:角膜在具有机械弹性的同时透射光的能力直接归因于含有胶原蛋白原纤维正交薄片的细胞外基质的形成。人们对原纤维的详细结构以及这种结构如何支撑角膜的机械性能和组织的了解很少。在这项研究中,我们使用自动电子断层扫描来研究角膜胶原原纤维中分子的三维组织。重建结果显示,直径为36 nm的胶原纤维中的胶原分子组织成微纤维(直径约4 nm),以右旋螺旋状向纤丝长轴倾斜≈15°。一个出乎意料的发现是,微纤丝呈现出恒定的倾斜角,而与纤丝内的径向位置无关。该特征表明,同心层中的微纤维并不总是彼此平行的,并且不能在层之间保留相同的邻居。对横向结构的分析表明,微纤维在胶原纤维的67 nm轴向重复区域内显示有序和无序的区域。此外,微原纤维在胶原原纤维的轴向重复的三个特定区域有序,其对应于间隙区的N-和C-端肽和d-带。重建还显示大分子在与微纤维最有序的位置精确对应的位置结合到纤维表面。

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