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Chemistry of collagen cross-linking: biochemical changes in collagen during the partial mineralization of turkey leg tendon.

机译:胶原蛋白交联化学:火鸡腿腱部分矿化过程中胶原蛋白的生化变化。

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摘要

With age, the proximal sections of turkey leg tendons become calcified, and this phenomenon has led to their use as a model for collagen mineralization. Mineralizing turkey leg tendon was used in this study to characterize further the composition and cross-linking of collagen in calcified tissues. The cross-link profiles of mineralizing collagen are significantly different from those of other collagenous matrices with characteristically low amounts of hydroxylysyl-pyridinoline and the presence of lysyl-pyridinoline and pyrrolic cross-links. However, the presence of the immature cross-link precursors previously reported in calcifying tissues was not supported in the present study, and was found to be due to the decalcification procedure using EDTA. Analysis of tendons from young birds demonstrated differences in the cross-link profile which indicated a higher level of hydroxylation of specific triple-helical lysines involved in cross-linking of the proximal tendon. This may be related to later calcification, suggesting that this part of the tendon is predestined to be calcified. The minimal changes in lysyl hydroxylation in both regions of the tendon with age were in contrast with the large changes in the cross-link profile, indicating differential hydroxylation of the helical and telopeptide lysine residues. Changes with age in the collagen matrix, its turnover and thermal properties in both the proximal and distal sections of the tendon clearly demonstrate that a new and modified matrix is formed throughout the tendon, and that a different type of matrix is formed at each site.
机译:随着年龄的增长,火鸡腿腱的近端部分会钙化,这种现象导致它们被用作胶原矿化的模型。在这项研究中使用矿化的火鸡腿腱来进一步表征钙化组织中胶原的组成和交联。矿化胶原蛋白的交联曲线与其他胶原蛋白基质的交联曲线显着不同,其他胶原蛋白基质的特征是羟基糖基吡啶啉的含量低,并且存在赖氨酰吡啶啉和吡咯烷基交联。但是,本研究不支持先前在钙化组织中报告的未成熟交联前体的存在,并且发现这是由于使用EDTA进行的脱钙程序所致。对幼鸽的肌腱进行分析表明,交联曲线存在差异,这表明参与近端肌腱交联的特定三螺旋赖氨酸的羟化水平较高。这可能与后来的钙化有关,提示这部分肌腱注定要钙化。在肌腱的两个区域中,随着年龄的增长,赖氨酰羟化的最小变化与交联曲线的大变化形成对比,表明螺旋和端肽赖氨酸残基的差异性羟化。胶原基质随着其年龄的变化,其在腱的近端和远端部分的周转率和热学性质的变化清楚地表明,在整个腱中形成了新的改性基质,并且在每个部位形成了不同类型的基质。

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