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首页> 外文期刊>ACS nano >Shear-Induced beta-Crystallite Unfolding in Condensed Phase Nanodroplets Promotes Fiber Formation in a Biological Adhesive
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Shear-Induced beta-Crystallite Unfolding in Condensed Phase Nanodroplets Promotes Fiber Formation in a Biological Adhesive

机译:剪切诱导的凝结相纳米型纳米玻璃晶体展开促进生物粘合剂中的纤维形成

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摘要

Natural materials provide an increasingly important role model for the development and processing of next-generation polymers. The velvet worm Euperipatoides rowelli hunts using a projectile, mechanoresponsive adhesive slime that rapidly and reversibly transitions into stiff glassy polymer fibers following shearing and drying. However, the molecular mechanism underlying this mechanoresponsive behavior is still unclear. Previous work showed the slime to be an emulsion of nanoscale charge-stabilized condensed droplets comprised primarily of large phosphorylated proteins, which under mechanical shear coalesce and self-organize into nano- and microfibrils that can be drawn into macroscopic fibers. Here, we utilize wide-angle X-ray diffraction and vibrational spectroscopy coupled with in situ shear deformation to explore the contribution of protein conformation and mechanical forces to the fiber formation process. Although previously believed to be unstructured, our findings indicate that the main phosphorylated protein component possesses a significant beta-crystalline structure in the storage phase and that shear induced partial unfolding of the protein is a key first step in the rapid self-organization of nanodroplets into fibers. The insights gained here have relevance for sustainable production of advanced polymeric materials.
机译:天然材料为下一代聚合物的开发和加工提供了越来越重要的榜样。 Velvet蠕虫Quperipatoides罗米尔狩猎使用射弹力型粘合剂粘合剂,在剪切和干燥后,快速且可逆地过渡到僵硬的玻璃聚合物纤维中。然而,这个机制行为的分子机制仍然不清楚。以前的工作表明,粘液是纳米级电荷稳定的液体乳液,其主要由大型磷酸化蛋白质组成,其在机械剪切结合物下并自组织成可以吸入宏观纤维的纳米和微纤维。这里,我们利用广角X射线衍射和振动光谱,与原位剪切变形相结合,以探讨蛋白质构象和机械力与纤维形成过程的贡献。虽然以前认为是非结构化的,但我们的研究结果表明,主要磷酸化蛋白质组分在储存阶段具有显着的β结晶结构,并且蛋白质的剪切诱导的部分展开是纳米辊快速自组织中的一个关键第一步纤维。这里获得的见解对于高级聚合物材料的可持续生产具有相关性。

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