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Mechanical behavior comparison of spider and silkworm silks using molecular dynamics at atomic scale

机译:蜘蛛丝和蚕丝力学行为的原子尺度分子动力学比较

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摘要

Spider and silkworm silk proteins have received much attention owing to their inherent structural stability, biodegradability, and biocompatibility. These silk protein materials have various mechanical characteristics such as elastic modulus, ultimate strength and fracture toughness. While the considerable mechanical characteristics of the core crystalline regions of spider silk proteins at the atomistic scale have been investigated through several experimental techniques and computational studies, there is a lack of comparison between spider and silkworm fibroins in the atomistic scale. In this study, we investigated the differences between the mechanical characteristics of spider and silkworm fibroin structures by applying molecular dynamics and steered molecular dynamics. We found that serine amino acids in silkworm fibroins not only increased the number of hydrogen bonds, but also altered their structural characteristics and mechanical properties.
机译:蜘蛛和蚕丝蛋白由于其固有的结构稳定性,生物降解性和生物相容性而备受关注。这些丝蛋白材料具有各种机械特性,例如弹性模量,极限强度和断裂韧性。尽管通过几种实验技术和计算研究已经研究了蜘蛛丝蛋白核心晶体区域在原子尺度上的相当大的机械特性,但是在蜘蛛和蚕丝蛋白之间在原子尺度上却缺乏比较。在这项研究中,我们通过应用分子动力学和操纵分子动力学研究了蜘蛛和蚕丝蛋白结构的机械特性之间的差异。我们发现,蚕丝蛋白中的丝氨酸氨基酸不仅增加了氢键的数量,而且改变了它们的结构特征和机械性能。

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