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首页> 外文期刊>Journal of Molecular Biology >A cyclic peptide inhibitor of ApoC-II peptide fibril formation: Mechanistic insight from NMR and molecular dynamics analysis
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A cyclic peptide inhibitor of ApoC-II peptide fibril formation: Mechanistic insight from NMR and molecular dynamics analysis

机译:ApoC-II肽原纤维形成的环肽抑制剂:NMR和分子动力学分析的机理见解

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The misfolding and aggregation of proteins to form amyloid fibrils is a characteristic feature of several common age-related diseases. Agents that directly inhibit formation of amyloid fibrils represent one approach to combating these diseases. We have investigated the potential of a cyclic peptide to inhibit fibril formation by fibrillogenic peptides from human apolipoprotein C-II (apoC-II). Cyc[60-70] was formed by disulfide cross-linking of cysteine residues added to the termini of the fibrillogenic peptide comprising apoC-II residues 60-70. This cyclic peptide did not self-associate into fibrils. However, substoichiometric concentrations of cyc[60-70] significantly delayed fibril formation by the fibrillogenic, linear peptides apoC-II[60-70] and apoC-II[56-76]. Reduction of the disulfide bond or scrambling the amino acid sequence within cyc[60-70] significantly impaired its inhibitory activity. The solution structure of cyc[60-70] was solved using NMR spectroscopy, revealing a well-defined structure comprising a hydrophilic face and a more hydrophobic face containing the Met60, Tyr63, Ile66 and Phe67 side chains. Molecular dynamics (MD) studies identified a flexible central region within cyc[60-70], while MD simulations of "scrambled" cyc[60-70] indicated an increased formation of intramolecular hydrogen bonds and a reduction in the overall flexibility of the peptide. Our structural studies suggest that the inhibitory activity of cyc[60-70] is mediated by an elongated structure with inherent flexibility and distinct hydrophobic and hydrophilic faces, enabling cyc[60-70] to interact transiently with fibrillogenic peptides and inhibit fibril assembly. These results suggest that cyclic peptides based on amyloidogenic core peptides could be useful as specific inhibitors of amyloid fibril formation.
机译:蛋白质的错误折叠和聚集形成淀粉样蛋白原纤维是几种常见的与年龄有关的疾病的特征。直接抑制淀粉样蛋白原纤维形成的药物代表了对抗这些疾病的一种方法。我们已经研究了环肽抑制人载脂蛋白C-II(apoC-II)的原纤维形成肽抑制原纤维形成的潜力。 Cyc [60-70]是通过半胱氨酸残基的二硫键交联形成的,该半胱氨酸残基添加到包含apoC-II残基60-70的原纤维形成肽的末端。该环状肽没有自缔合为原纤维。然而,亚化学计量浓度的cyc [60-70]显着延迟了原纤化线性肽apoC-II [60-70]和apoC-II [56-76]的原纤维形成。 cyc [60-70]中二硫键的还原或氨基酸序列的混乱显着削弱了其抑制活性。 cyc [60-70]的溶液结构使用NMR光谱解析,揭示了一个明确定义的结构,该结构包含一个亲水面和一个更疏水的面,该面包含Met60,Tyr63,Ile66和Phe67侧链。分子动力学(MD)研究确定了cyc [60-70]内的柔性中心区域,而“加扰”的cyc [60-70]的MD模拟表明分子内氢键的形成增加,并且肽的整体柔性降低。我们的结构研究表明,cyc [60-70]的抑制活性是由具有固有柔韧性以及独特的疏水和亲水表面的细长结构介导的,从而使cyc [60-70]能够与原纤维形成肽短暂相互作用并抑制原纤维形成。这些结果表明,基于淀粉样蛋白形成核心肽的环肽可用作淀粉样蛋白原纤维形成的特异性抑制剂。

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