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固态核磁共振和X射线纤维衍射揭示的胰岛淀粉样多肽20-29区域形成的淀粉样纤维多态性的结构见解

Structural insights into the polymorphism of amyloid-like fibrils formed by region 20-29 of amylin revealed by solid-state NMR and X-ray fiber diffraction.

作者信息

Madine Jillian, Jack Edward, Stockley Peter G, Radford Sheena E, Serpell Louise C, Middleton David A

机构信息

School of Biological Sciences, University of Liverpool, UK.

出版信息

J Am Chem Soc. 2008 Nov 12;130(45):14990-5001. doi: 10.1021/ja802483d. Epub 2008 Oct 21.

Abstract

Many unrelated proteins and peptides can assemble into amyloid or amyloid-like nanostructures, all of which share the cross-beta motif of repeat arrays of beta-strands hydrogen-bonded along the fibril axis. Yet, paradoxically, structurally polymorphic fibrils may derive from the same initial polypeptide sequence. Here, solid-state nuclear magnetic resonance (SSNMR) analysis of amyloid-like fibrils of the peptide hIAPP 20-29, corresponding to the region S (20)NNFGAILSS (29) of the human islet amyloid polypeptide amylin, reveals that the peptide assembles into two amyloid-like forms, (1) and (2), which have distinct structures at the molecular level. Rotational resonance SSNMR measurements of (13)C dipolar couplings between backbone F23 and I26 of hIAPP 20-29 fibrils are consistent with form (1) having parallel beta-strands and form (2) having antiparallel strands within the beta-sheet layers of the protofilament units. Seeding hIAPP 20-29 with structurally homogeneous fibrils from a 30-residue amylin fragment (hIAPP 8-37) produces morphologically homogeneous fibrils with similar NMR properties to form (1). A model for the architecture of the seeded fibrils is presented, based on the analysis of X-ray fiber diffraction data, combined with an extensive range of SSNMR constraints including chemical shifts, torsional angles, and interatomic distances. The model features a cross-beta spine comprising two beta-sheets with an interface defined by residues F23, A25, and L27, which form a hydrophobic zipper. We suggest that the energies of formation for fibril form containing antiparallel and parallel beta-strands are similar when both configurations can be stabilized by a core of hydrophobic contacts, which has implications for the relationship between amino acid sequence and amyloid polymorphism in general.

摘要

许多不相关的蛋白质和肽可以组装成淀粉样或类淀粉样纳米结构,所有这些结构都具有交叉β基序,即沿纤维轴氢键连接的β链重复阵列。然而,矛盾的是,结构多态的纤维可能源自相同的初始多肽序列。在这里,对肽hIAPP 20-29的类淀粉样纤维进行固态核磁共振(SSNMR)分析,该肽对应于人胰岛淀粉样多肽胰淀素的区域S(20)NNFGAILSS(29),结果表明该肽组装成两种类淀粉样形式,(1)和(2),它们在分子水平上具有不同的结构。对hIAPP 20-29纤维主链F23和I26之间的(13)C偶极耦合进行旋转共振SSNMR测量,结果表明形式(1)在原纤维单元的β折叠层内具有平行β链,形式(2)具有反平行链。用来自30个残基的胰淀素片段(hIAPP 8-37)的结构均匀的纤维对hIAPP 20-29进行接种,可产生形态均匀的纤维,其NMR特性与形式(1)相似。基于对X射线纤维衍射数据的分析,并结合包括化学位移、扭转角和原子间距离在内的广泛的SSNMR约束条件,提出了接种纤维的结构模型。该模型的特征是一个交叉β脊柱,由两个β折叠组成,其界面由残基F23、A25和L27定义,形成一个疏水拉链。我们认为,当两种构型都可以通过疏水接触核心稳定时,包含反平行和平行β链的纤维形式的形成能量相似,这总体上对氨基酸序列与淀粉样多态性之间的关系具有启示意义。

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