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Membrane Determinants Affect Fibrillation Processes of beta-Sheet Charged Peptides

机译:膜决定簇会影响β-薄纸带电肽的原纤化过程

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摘要

Assembly of fibrillar peptide structures is dependent both upon their intrinsic propensities toward beta-structure formation, as well as on structural modulation by external molecular factors. beta-sheet structures may either be designed to form useful assemblies or be the undesired consequence of protein denaturation to toxic amyloid structures in several neurodegenerative diseases. Membrane bilayers have been implicated as primary initiators and modulators of amyloid fibrillation and the reasons for this effect are yet to be elucidated. Here, we employed a set of three charged peptides having the tendency to form beta-sheet fibrils, to investigate the effect of zwitterionic and negatively charged bilayer vesicles on their assembly structures. Microscopic and spectroscopic experiments revealed intimate relationship between peptide/membrane charges and fibrillation properties. Electrostatic attraction was apparent between oppositely charged peptides and vesicles; however, such interactions did not appear to significantly modulate fibril morphologies of either the net anionic peptide Or the cationic one. Yet, a dramatic structural effect was observed when the nominal zwitterionic peptide underwent fibrillation in the presence of negatively charged vesicles. Assemblies of this peptide display a net positive charge, which facilitated the counterionic interactions with the vesicles. Furthermore, these interactions templated a unique twisted fiber morphology demonstrating the dramatic effect membrane-mediated interactions exert on fibril morphologies.
机译:纤维状肽结构的组装依赖于其内在的施工,以及通过外部分子因子的结构调节。 β-片状结构可以设计成形成有用的组件,或者是蛋白质变性对若干神经变性疾病中有毒淀粉样蛋白结构的不期望的结果。膜双层被归因于淀粉样蛋白纤维状的主要引发剂和调节剂,并且尚未阐明这种效果的原因。在这里,我们使用一组具有趋势形成β-片原纤维的三种带电肽,以研究两性离子和带负电的双层囊泡对其组装结构的影响。微观和光谱实验揭示了肽/膜电荷和原纤化性能之间的恰当关系。静电吸引在相反的带电肽和囊泡之间是显而易见的;然而,这种相互作用似乎没有显着调节净阴离子肽或阳离子的原纤维形态。然而,当在带负电荷的囊泡存在下造成纤维化的标称两性离子肽时,观察到戏剧性结构效果。该肽的组件显示净正电荷,这促进了与囊泡的抗衡离子相互作用。此外,这些相互作用模板化了一种独特的扭曲纤维形态,证明了戏剧效果介导的相互作用对原纤维形态施加。

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  • 来源
    《Biomacromolecules 》 |2018年第2期| 共8页
  • 作者单位

    Ben Gurion Univ Negev Dept Chem IL-84105 Beer Sheva Israel;

    Ben Gurion Univ Negev Dept Chem IL-84105 Beer Sheva Israel;

    Ben Gurion Univ Negev Avram &

    Stella Goldstein Goren Dept Biotechnol En IL-84105 Beer Sheva Israel;

    Ben Gurion Univ Negev Dept Chem IL-84105 Beer Sheva Israel;

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

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