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Structure and Dynamics of Spider Silk Studied with Solid-State Nuclear Magnetic Resonance and Molecular Dynamics Simulation

机译:固态核磁共振研究蜘蛛丝的结构与动力学及分子动力学模拟

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摘要

This review will introduce very recent studies using solid-state nuclear magnetic resonance (NMR) and molecular dynamics (MD) simulation on the structure and dynamics of spider dragline silks conducted by the author’s research group. Spider dragline silks possess extraordinary mechanical properties by combining high tensile strength with outstanding elongation before breaking, and therefore continue to attract attention of researchers in biology, biochemistry, biophysics, analytical chemistry, polymer technology, textile technology, and tissue engineering. However, the inherently non-crystalline structure means that X-ray diffraction and electron diffraction methods provide only limited information because it is difficult to study the molecular structure of the amorphous region. The most detailed picture of the structure and dynamics of the silks in the solid state experimentally have come from solid-state NMR measurements coupled with stable isotope labeling of the silks and the related silk peptides. In addition, combination of solid-state NMR and MD simulation was very powerful analytical tools to understand the local conformation and dynamics of the spider dragline silk in atomic resolution. In this review, the author will emphasize how solid-state NMR and MD simulation have contributed to a better understanding of the structure and dynamics in the spider dragline silks.
机译:这篇评论将介绍作者研究小组使用固态核磁共振(NMR)和分子动力学(MD)模拟的关于蜘蛛式拉铲丝结构和动力学的最新研究。蜘蛛式拉铲丝通过将高拉伸强度与断裂前的优异伸长率相结合而具有非凡的机械性能,因此继续引起生物学,生物化学,生物物理学,分析化学,聚合物技术,纺织技术和组织工程学研究人员的关注。然而,固有的非晶体结构意味着X射线衍射和电子衍射方法仅提供有限的信息,因为难以研究非晶区域的分子结构。固态中丝绸的结构和动力学的最详细的实验图片来自固态NMR测量以及丝绸和相关丝绸肽的稳定同位素标记。此外,固态NMR和MD模拟的组合是非常强大的分析工具,可用于了解蜘蛛拉铲丝的局部构象和动力学的原子分辨率。在这篇综述中,作者将强调固态NMR和MD模拟如何有助于更好地理解蜘蛛拉铲丝的结构和动力学。

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