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Self-Assembly Enhances the Strength of Fibers Made from Vimentin Intermediate Filament Proteins

机译:自组装增强了由Vimentin中间长丝蛋白制成的纤维的强度

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摘要

Hagfish slime threads were recently established as a promising biomimetic model for efforts to produce ecofriendly alternatives to petroleum polymers. Initial attempts to make fibers from solubilized slime thread proteins fell short of achieving the outstanding mechanics of native slime threads. Here we tested the hypothesis that the high strength and toughness of slime threads arise from the ability of constituent intermediate filaments to undergo a stress-induced α-to-β transition. To do this, we made fibers from human vimentin proteins that were first allowed to self-assemble into 10 nm intermediate filaments. Fibers made from assembled vimentin hydrogels underwent an α-to-β transition when strained and exhibited improved mechanical performance. Our data demonstrate that it is possible to make materials from intermediate filament hydrogels and that mimicking the secondary structure of native hagfish slime threads using intermediate filament self-assembly is a promising strategy for improving the mechanical performance of biomimetic protein materials.
机译:最近建立了Hagfish粘液线程作为一种有前途的生物仿生模型,以便为石油聚合物生产Ecofriendly替代品的努力。初步尝试从溶解的粘液型螺纹蛋白质中的纤维降低了实现原生粘液线的出色机制。在这里,我们测试了粘液螺纹的高强度和韧性的假设,从组成中间长丝经历应激诱导的α-β转变的能力。为此,我们从人类植物蛋白质中制造纤维,首先使得允许自组装成10nm中间细丝。由组装的Vimentin水凝胶制成的纤维在应变时在α-to-β转变进行并且表现出改善的机械性能时。我们的数据表明,可以使用中间丝水凝胶制造材料,并且使用中间丝自组装模拟天然胡椒粘液丝的二次结构是提高仿生蛋白质材料的机械性能的有希望的策略。

著录项

  • 来源
    《Biomacromolecules 》 |2014年第2期| 共8页
  • 作者单位

    Department of Integrative Biology University of Guelph Guelph Ontario NIG 2W1 Canada;

    Department of Physics and Astronomy McMaster University Hamilton Ontario L8S 4M1 Canada;

    Department of Integrative Biology University of Guelph Guelph Ontario NIG 2W1 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
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