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单体平行β-折叠样结构在水溶液中的成核及其自组装。

The nucleation of monomeric parallel beta-sheet-like structures and their self-assembly in aqueous solution.

作者信息

Chitnumsub P, Fiori W R, Lashuel H A, Diaz H, Kelly J W

机构信息

Department of Chemistry and The Skaggs Institute of Chemical Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

Bioorg Med Chem. 1999 Jan;7(1):39-59. doi: 10.1016/s0968-0896(98)00222-3.

Abstract

The aromatic diacid residue 4,6-dibenzofuranbispropionic acid (1) was designed to nucleate a parallel beta-sheet-like structure in small peptides in aqueous solution via a hydrogen-bonded hydrophobic cluster. Even though a 14-membered ring hydrogen bond necessary for parallel beta-sheet formation is favored in simple amides composed of 1, this hydrogen bonding interaction does not appear to be sufficient to nucleate parallel beta-sheet formation in the absence of hydrophobic clustering between the dibenzofuran portion of 1 and the hydrophobic side chains of the flanking alpha-amino acids. The subsequence --hydrophobic residue-1-hydrophobic residue-- is required for folding in the context of a nucleated two-stranded parallel beta-sheet structure. In all cases where the peptidomimetics can fold into two diastereomeric parallel beta-sheet structures having different hydrogen bonding networks, these conformations appear to exchange rapidly. The majority of the parallel beta-sheet structures evaluated herein undergo linked intramolecular folding and self-assembly, affording a fibrillar beta-sheet quaternary structure. To unlink folding and assembly, asymmetric parallel beta-sheet structures incorporating N-methylated alpha-amino acid residues have been synthesized using a new solid phase approach. Residue 1 facilitates the folding of several peptides described within affording a monomeric parallel beta-sheet-like structure in aqueous solution, as ascertained by a variety of spectroscopic and biophysical methods, increasing our understanding of parallel beta-sheet structure.

摘要

芳香二酸残基4,6 - 二苯并呋喃双丙酸(1)被设计用于通过氢键连接的疏水簇在水溶液中的小肽中形成平行β - 折叠样结构。尽管由1构成的简单酰胺中有利于平行β - 折叠形成的14元环氢键是有利的,但在1的二苯并呋喃部分与侧翼α - 氨基酸的疏水侧链之间不存在疏水簇集的情况下,这种氢键相互作用似乎不足以引发平行β - 折叠的形成。在有核的双链平行β - 折叠结构的背景下折叠需要后续的——疏水残基 - 1 - 疏水残基——序列。在所有肽模拟物能够折叠成具有不同氢键网络的两种非对映体平行β - 折叠结构的情况下,这些构象似乎会迅速交换。本文评估的大多数平行β - 折叠结构经历连接的分子内折叠和自组装,形成纤维状β - 折叠四级结构。为了解耦折叠和组装,已使用一种新的固相方法合成了包含N - 甲基化α - 氨基酸残基的不对称平行β - 折叠结构。残基1促进了所述几种肽的折叠,通过各种光谱和生物物理方法确定,在水溶液中形成单体平行β - 折叠样结构,增进了我们对平行β - 折叠结构的理解。

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