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首页> 外文期刊>Journal of Molecular Biology >Peptides Composed of Alternating L- and D-Amino Acids Inhibit Amyloidogenesis in Three Distinct Amyloid Systems Independent of Sequence
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Peptides Composed of Alternating L- and D-Amino Acids Inhibit Amyloidogenesis in Three Distinct Amyloid Systems Independent of Sequence

机译:由交替的L-和D-氨基酸组成的肽抑制三种不同淀粉样蛋白系统中的淀粉样蛋白化,与序列无关

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There is now substantial evidence that soluble oligomers are primary toxic agents in amyloid diseases. The development of an antibody recognizing the toxic soluble oligomeric forms of different and unrelated amyloid species suggests a common conformational intermediate during amyloidogenesis. We previously observed a common occurrence of a novel secondary structure element, which we call alpha-sheet, in molecular dynamics (MD) simulations of various amyloidogenic proteins, and we hypothesized that the toxic conformer is composed of alpha-sheet structure. As such, alpha-sheet may represent a conformational signature of the misfolded intermediates of amyloidogenesis and a potential unique binding target for peptide inhibitors. Recently, we reported the design and characterization of a novel hairpin peptide (alpha 1 or AP90) that adopts stable alpha-sheet structure and inhibits the aggregation of the (beta-Amyloid Peptide A beta 42 and transthyretin. AP90 is a 23-residue hairpin peptide featuring alternating D- and L-amino acids with favorable conformational propensities for alpha-sheet formation, and a designed turn. For this study, we reverse engineered AP90 to identify which of its design features is most responsible for conferring alpha-sheet stability and inhibitory activity. We present experimental characterization (CD and FTIR) of seven peptides designed to accomplish this. In addition, we measured their ability to inhibit aggregation in three unrelated amyloid species: A beta 42, transthyretin, and human islet amylin polypeptide. We found that a hairpin peptide featuring alternating L- and D-amino acids, independent of sequence, is sufficient for conferring alpha-sheet structure and inhibition of aggregation. Additionally, we show a correlation between alpha-sheet structural stability and inhibitory activity. (C) 2016 Elsevier Ltd. All rights reserved.
机译:现在存在显着的证据,即可溶性低聚物是淀粉样蛋白疾病中的初级有毒剂。识别出毒性可溶性寡聚形式的不同和无关淀粉样物质的抗体的发展表明淀粉样蛋白发生期间常见的构象中间体。我们之前观察到我们称之为α-薄片的新型二级结构元素的常见发生,其中各种淀粉样蛋白的分子动力学(MD)模拟,并且我们假设毒塑造剂由α-片状结构组成。这样,α-片材可以代表淀粉片过滤剂的错误折叠中间体的构象签名和肽抑制剂的潜在独特的结合靶标。最近,我们报道了一种新的发夹肽(α1或AP90)的设计和表征,其采用稳定的α-片状结构并抑制(β-淀粉样肽β22和Transthyretin的聚集。AP90是23-残基的发夹肽以交替的D-和L-氨基酸为具有良好的构象性施工,以及设计的转弯。对于这项研究,我们反向设计的AP90,以确定哪些设计特征最负责赋予α-纸张稳定性最负责抑制活性。我们呈现七种肽设计以实现这一点的实验表征(CD和FTIR)。此外,我们测量了它们在三种无关淀粉样物种中抑制聚集的能力:β22,Transthyretin和人胰岛淀粉蛋白多肽。我们发现具有交替的发夹肽,其具有与序列无关的交替的L-和D-氨基酸,足以赋予α-片状结构和抗抑制作用杰作。另外,我们展示了α-纸张结构稳定性和抑制活性之间的相关性。 (c)2016 Elsevier有限公司保留所有权利。

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