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首页> 外文期刊>Biomacromolecules >Packing Structure of Antiparallel beta-Sheet Polyalanine Region in a Sequential Model Peptide of Nephila clavipes Dragline Silk Studied Using C-13 Solid-State NMR and MD Simulation
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Packing Structure of Antiparallel beta-Sheet Polyalanine Region in a Sequential Model Peptide of Nephila clavipes Dragline Silk Studied Using C-13 Solid-State NMR and MD Simulation

机译:使用C-13固态NMR和MD仿真研究了Nephila Clavipes爪线丝的顺序模型肽中的反平行β-片多卤胺区域的包装结构

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摘要

Packing structures of polyalanine regions, which are considered to be the reason for the extremely high strength of spider dragline silks, were studied using a series of sequential peptides: (Glu)(4)GlyGlyLeuGlyGlyGlnGlyAlaGly(Ala)(n)GlyGlyAlaGlyGlnGlyGlyTyrGlyGly(Glu)(4) (n = 3-8) using C-13 solid-state NMR spectroscopy. The conformations of (Ala)(n) in the freeze-dried peptides changed gradually with increasing n from random coils to alpha-helices with partial antiparallel beta-sheet (AP-beta) structures. Conversely, all the insolubilized peptides, n = 6-8 after low-pH treatment and n = 4-8 after formic acid/methanol treatment, formed AP-beta structures with significant amounts of staggered packing arrangements. These results are different from previously obtained results for pure alanine oligopeptides, that is, AP-beta (Ala)(n) formed rectangular packing for less than n = 6 but staggered packings for n >= 7. The C-13-labeled peptides were also used to confirm the staggered packing arrangements from NMR dynamics. Furthermore, a MD simulation supported the observed results.
机译:使用一系列顺序肽研究了多卤素区的填充结构,被认为是蜘蛛爪丝丝纤维的极高强度的原因4)(n = 3-8)使用C-13固态NMR光谱。 (ALA)(N)在冷冻干燥肽中的构象随着随机线圈的增加而逐渐变化为α-螺旋,部分反向β-片(AP-BETA)结构。相反,在低pH处理后的所有不溶性肽N = 6-8,N = 4-8甲酸/甲醇处理后,形成具有显着量交错填料装置的AP-β结构。这些结果与先前获得的纯丙氨酸寡肽的结果不同,即AP-β(ALA)(N)形成的矩形填料小于n = 6但是对于N> = 7的交错填料。C-13标记的肽还用于确认来自NMR动态的交错包装安排。此外,MD模拟支持观察结果。

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  • 来源
    《Biomacromolecules 》 |2019年第10期| 共11页
  • 作者单位

    Tokyo Univ Agr &

    Technol Dept Biotechnol Koganei Tokyo 1848588 Japan;

    Tokyo Univ Agr &

    Technol Dept Biotechnol Koganei Tokyo 1848588 Japan;

    Tokyo Univ Agr &

    Technol Dept Biotechnol Koganei Tokyo 1848588 Japan;

    Tokyo Univ Agr &

    Technol Dept Biotechnol Koganei Tokyo 1848588 Japan;

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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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