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Influence of supramolecular architecture upon the molecular mobility of elastin

机译:超分子结构对弹性蛋白分子迁移率的影响

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Mature elastin is a cross-linked polymer responsible for elastic recoil in various connective tissues. The most probable model for the secondary structure seems to be a dynamic blend between a random coil network and an anisotropic model with the alternation of /spl alpha/ helices and recurrent or isolated /spl beta/ turns. We compare the chain dynamics of native elastin purified from bovine neck ligament and its insoluble products obtained from enzymatic digestion. The soluble, uncross-linked derivative is also analysed to obtain new information on the influence of network on elastin molecular mobility. TSC and DDS experiments bring to the fore secondary and main modes for elastin and its derivatives. It has been highlighted that elastolysis and cross-linking do not affect the localised motions, but modify in a significant manner more delocalised motions along the polypeptidic chains.
机译:成熟的弹性蛋白是一种交联聚合物,负责各种结缔组织中的弹性回弹。二级结构最可能的模型似乎是随机线圈网络和各向异性模型之间的动态混合,其中/ spl alpha /螺旋和递归或孤立的/ spl beta /圈数交替出现。我们比较了从牛颈韧带纯化的天然弹性蛋白及其从酶消化获得的不溶性产物的链动力学。还对可溶性未交联衍生物进行了分析,以获得有关网络对弹性蛋白分子迁移率影响的新信息。 TSC和DDS实验将弹性蛋白及其衍生物的次要和主要模式带到了第一位。已经强调,弹性和交联不影响局部运动,而是以显着方式改变沿多肽链的更多的非局部运动。

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