首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Using single molecule force spectroscopy to facilitate a rational design of Ca2+-responsive β-roll peptide-based hydrogels
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Using single molecule force spectroscopy to facilitate a rational design of Ca2+-responsive β-roll peptide-based hydrogels

机译:使用单分子力光谱学促进Ca2 +响应β-卷肽的水凝胶的合理设计

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摘要

This study demonstrated that incorporation of Ca ~(2+) -responsive β-roll peptides arising from repeat-in-toxin (RTX) into elastomeric proteins provided an approach to construct hydrogels that exhibit Ca ~(2+) -responsive mechanical properties through a force analysis-based approach. Use of circular dichroism spectroscopy confirmed that there was a Ca ~(2+) -induced conformational change of RTX-based recombinant polyproteins. The polyproteins could be crosslinked into solid hydrogels. Shrinking/swelling measurements showed a Ca ~(2+) -responsive dimensional change of the RTX-based hydrogels. Mechanical measurements at constant pulling speed and at constant extension suggested that the mechanical properties of the RTX-based hydrogels were Ca ~(2+) -responsive. Experimental single molecule force spectroscopies were used to investigate the nano-mechanical stability of the RTX domains. Single molecule atomic force microscopy and optical tweezers provided evidence that the Ca ~(2+) -dependent refolding of the intrinsically disordered RTX led to the force increase. The results indicated that the unique Ca ~(2+) -responsive mechanical properties of the RTX-based hydrogels at the macroscopic level could be attributed to the nano-mechanical properties of the RTX domains engineered into individual polyproteins at the single molecule level.
机译:该研究证明,将由重复内辛(RTX)产生的Ca〜(2+) - 响应β-卷肽掺入弹性体蛋白中提供了一种构建具有Ca〜(2+) - 夸张的机械性能的水凝胶的方法基于力分析的方法。使用圆形二中间光谱证实,存在Ca〜(2+) - 基于RTX的重组多蛋白的构象变化。聚蛋白可以与固体水凝胶交联。收缩/溶胀测量显示了基于RTX的水凝胶的CA〜(2+) - 夸张的尺寸变化。在恒定拉动速度和恒定扩展下的机械测量表明,基于RTX的水凝胶的机械性能是Ca〜(2+)的响应。实验单分子力谱仪用于研究RTX结构域的纳米机械稳定性。单分子原子力显微镜和光学镊子提供了证据表明,CA〜(2+) - 本质上无序的RTX的依赖性重叠导致力量增加。结果表明,宏观水平的RTX基水凝胶的独特Ca〜(2+) - 夸张的机械性能可归因于在单个分子水平的单个聚丙烯中工程化的RTX结构域的纳米力学性质。

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  • 作者单位

    State Key Laboratory of Organic–Inorganic Composite Materials Beijing University of Chemical Technology;

    Department of Chemistry The University of British Columbia;

    State Key Laboratory of Organic–Inorganic Composite Materials Beijing University of Chemical Technology;

    State Key Laboratory of Organic–Inorganic Composite Materials Beijing University of Chemical Technology;

    State Key Laboratory of Organic–Inorganic Composite Materials Beijing University of Chemical Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

  • 入库时间 2022-08-20 09:39:28

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