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首页> 外文期刊>Journal of Molecular Biology >Axial structure of the heterotypic collagen fibrils of vitreous humour andcartilage
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Axial structure of the heterotypic collagen fibrils of vitreous humour andcartilage

机译:玻璃体液和软骨异型胶原纤维的轴结构

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摘要

We have compared the axial structures of negatively stained heterotypic, type II collagen-containing fibrils with computer-generated staining patterns. Theoretical negative-staining patterns were created based upon the "bulkiness" of the individual amino acid side-chains in the primary sequence and the D-staggered arrangement of the triple-helices. The theoretical staining pattern of type II collagen was compared and cross-correlated with the experimental staining pattern of both reconstituted type II collagen fibrils, and fibrils isolated from adult and foetal cartilage and vitreous humour. The isolated fibrils differ markedly in both diameter and composition. Correlations were significantly improved when a degree of theoretical hydroxylysine glycosylation was applied, showing for the first time that this type of glycosylation influences the negative-staining pattern of collagen fibrils. Increased correlations were obtained when contributions from types V/XI and IX collagen were included in the simulation model. The N-propeptide of collagen type V/XI and the NC2 domain of type TX collagen both contribute to prominent stain-excluding peaks in the gap region. With decreasing fibril diameter, an increase of these two peaks was observed. Simulations of the fibril-derived staining patterns with theoretical patterns composed of proportions of types II, V/XI and IX collagen confirmed that the thinnest fibrils (i.e. vitreous humour collagen fibrils) have the highest minor collagen content. Comparison of the staining patterns showed that the organisation of collagen molecules within vitreous humour and cartilage fibrils is identical. The simulation model for vitreous humour, however, did not account for all stain-excluding mass observed in the staining pattern; this additional mass may be accounted for by collagen-associated macromolecules.
机译:我们已经将负染色的异型II型胶原蛋白原纤维的轴向结构与计算机生成的染色模式进行了比较。基于一级序列中单个氨基酸侧链的“丰满度”和三螺旋的D交错排列,创建了理论阴性染色模式。比较了II型胶原蛋白的理论染色模式,并将其与重构的II型胶原蛋白纤维以及从成人和胎儿软骨以及玻璃体液中分离出的原纤维的实验染色模式相互关联。分离出的原纤维的直径和组成均明显不同。当应用一定程度的理论羟基赖氨酸糖基化时,相关性得到显着改善,这首次表明这种类型的糖基化会影响胶原原纤维的负染色模式。当将V / XI和IX型胶原的贡献包括在仿真模型中时,相关性增加。 V / XI型胶原蛋白的N-前肽和TX型胶原蛋白的NC2结构域均对间隙区域内的显着染色峰不起作用。随着原纤维直径的减小,观察到这两个峰的增加。用由II,V / XI和IX型胶原蛋白的比例组成的理论图案对原纤维衍生的染色图案进行模拟,证实最薄的原纤维(即玻璃体液胶原原纤维)具有最高的次要胶原含量。染色方式的比较表明,玻璃体液和软骨原纤维内的胶原蛋白分子的组织是相同的。然而,玻璃体液的模拟模型并不能说明染色模式中观察到的所有污渍排除质量。胶原相关的大分子可以解释这种额外的质量。

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