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首页> 外文期刊>Journal of Molecular Biology >Spontaneous aggregation of the insulin-derived steric zipper peptide VEALYL results in different aggregation forms with common features
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Spontaneous aggregation of the insulin-derived steric zipper peptide VEALYL results in different aggregation forms with common features

机译:胰岛素衍生的立体拉链肽VEALYL的自发聚集导致具有共同特征的不同聚集形式

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Recently, several short peptides have been shown to self-assemble into amyloid fibrils with generic cross-β spines, so-called steric zippers, suggesting common underlying structural features and aggregation mechanisms. Understanding these mechanisms is a prerequisite for designing fibril-binding compounds and inhibitors of fibril formation. The hexapeptide VEALYL, corresponding to the residues B12-17 of full-length insulin, has been identified as one of these short segments. Here, we analyzed the structures of multiple, morphologically different (fibrillar, microcrystal-like, oligomeric) [ 13C,15N]VEALYL samples by solid-state nuclear magnetic resonance complemented with results from molecular dynamics simulations. By performing NHHC/CHHC experiments, we could determine that the β-strands within a given sheet of the amyloid-like fibrils formed by the insulin hexapeptide VEALYL are stacked in an antiparallel manner, whereas the sheet-to-sheet packing arrangement was found to be parallel. Experimentally observed secondary chemical shifts for all aggregate forms, as well as a?... and ψ backbone torsion angles calculated with TALOS, are indicative of β-strand conformation, consistent with the published crystal structure (PDB ID: 2OMQ). Thus, we could demonstrate that the structural features of all the observed VEALYL aggregates are in agreement with the previously observed homosteric zipper spine packing in the crystalline state, suggesting that several distinct aggregate morphologies share the same molecular architecture.
机译:近来,已显示出几种短肽可自组装为具有通用交叉β刺的淀粉样蛋白原纤维,即所谓的空间拉链,表明常见的潜在结构特征和聚集机制。了解这些机制是设计原纤维结合化合物和原纤维形成抑制剂的先决条件。与全长胰岛素的残基B12-17相对应的六肽VEALYL已被鉴定为这些短节段之一。在这里,我们通过固态核磁共振和分子动力学模拟的结果,对多个形态上不同的(原纤维状,微晶状,低聚物)[13C,15N] VEALYL样品的结构进行了分析。通过进行NHHC / CHHC实验,我们可以确定由胰岛素六肽VEALYL形成的淀粉样蛋白原纤维的给定薄片内的β链以反平行方式堆叠,而发现薄片到薄片的排列方式是平行的。实验中观察到的所有聚集体形式的二次化学位移,以及用TALOS计算的α...和ψ主链扭转角都表明β链构象,与公开的晶体结构一致(PDB ID:2OMQ)。因此,我们可以证明所有观察到的VEALYL聚集体的结构特征与先前观察到的结晶态的同位拉链脊柱堆积相符,表明几种不同的聚集体形态共享相同的分子结构。

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