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Structural and Conformational Dynamics of Self-Assembling Bioactive β-Sheet Peptide Nanostructures Decorated with Multivalent RNA-Binding Peptides

机译:多价RNA结合肽修饰的自组装生物活性β片状肽纳米结构的结构和构象动力学。

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摘要

Understanding the dynamic behavior of nanostructural systems is important during the development of controllable and tailor-made nanomaterials. This is particularly true for nanostructures that are intended for biological applications because biomolecules are usually highly dynamic and responsive to external stimuli. In this Article, we investigated the structural and conformational dynamics of self-assembling bioactive β-sheet peptide nanostructures using electron paramagnetic resonance (EPR) spectroscopy. The model peptide nanostructures are characterized by the cross-β spine of β-ribbon fibers and multiple RNA-binding bioactive peptides that constitute the shell of the nanostructures. We found first, that bioactive peptides at the shell of β-ribbon nanostracture have a mobility similar to that of an isolated monomeric peptide. Second, the periphery of the cross-β spine is more immobile than the distal part of surface-displayed bioactive peptides. Third, the rotational dynamics of short and long fibrils are similar; that is, the mobility is largely independent of the extent of aggregation. Fourth, peptides that constitute the shell are affected first by the external environment at the initial stage. The cross-β spine resists its external environment to a certain extent and abruptly disintegrates when the perturbation reaches a certain degree. Our results provide an overall picture of β-sheet peptide nanostructure dynamics, which should be useful in the development of dynamic self-assembled peptide nanostructures.
机译:在开发可控和量身定制的纳米材料期间,了解纳米结构系统的动态行为很重要。对于打算用于生物应用的纳米结构而言,尤其如此,因为生物分子通常具有很高的动态性,并且对外部刺激有反应。在本文中,我们使用电子顺磁共振(EPR)光谱研究了自组装生物活性β-折叠肽纳米结构的结构和构象动力学。所述模型肽纳米结构的特征在于β-碳带纤维的交叉-β脊柱和构成所述纳米结构的壳的多种RNA结合生物活性肽。我们首先发现,在β-碳带纳米结构​​的外壳上的生物活性肽具有与分离的单体肽相似的迁移率。其次,与表面展示的生物活性肽的远端相比,交叉-β脊柱的外围不动。第三,短原纤维和长原纤维的旋转动力学相似。也就是说,迁移率在很大程度上与聚合程度无关。第四,构成外壳的肽在初始阶段首先受到外部环境的影响。 β交叉脊柱在一定程度上抵抗了其外部环境,并在扰动达到一定程度时突然崩解。我们的结果提供了β-sheet肽纳米结构动力学的总体情况,这对于开发动态自组装肽纳米结构应该有用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2012年第38期|p.16047-16053|共7页
  • 作者单位

    Translational Research Center for Protein Function Control and Department of Materials Science & Engineering, Yonsei University,Seoul 120-749, Korea;

    Division of Materials Science, Korea Basic Science Institute (KBSI), Daejeon 305-333, Korea;

    Translational Research Center for Protein Function Control and Department of Materials Science & Engineering, Yonsei University,Seoul 120-749, Korea;

    Division of Materials Science, Korea Basic Science Institute (KBSI), Daejeon 305-333, Korea;

    Division of Materials Science, Korea Basic Science Institute (KBSI), Daejeon 305-333, Korea;

    Translational Research Center for Protein Function Control and Department of Materials Science & Engineering, Yonsei University,Seoul 120-749, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 03:13:39

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