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首页> 外文期刊>Angewandte Chemie >Fine Tuning of -Peptide Foldamers: a Single Atom Replacement Holds Back the Switch from an 8-Helix to a 12-Helix
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Fine Tuning of -Peptide Foldamers: a Single Atom Replacement Holds Back the Switch from an 8-Helix to a 12-Helix

机译:-肽折叠夹的微调:单个原子替换阻止了从8螺旋到12螺旋的转换

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摘要

Cyclic homologated amino acids are important building blocks for the construction of helical foldamers. N-aminoazetidine-2-carboxylic acid (AAzC), an aza analogue of trans-2-aminocyclobutanecarboxylic acid (tACBC), displays a strong hydrazino turn conformational feature, which is proposed to act as an 8-helix primer. tACBC oligomers bearing a single N-terminal AAzC residue were studied to evaluate the ability of AAzC to induce and support an 8-helix along the oligopeptide length. While tACBC homooligomers assume a dominant 12-helix conformation, the aza-primed oligomers preferentially adopt a stabilized 8-helix conformation for an oligomer length up to 6 residues. The (formal) single-atom exchange at the Nterminus of a tACBC oligomer thus contributes to the sustainability of the 8-helix, which resists the switch to a 12-helix. This effect illustrates atomic-level programmable design for fine tuning of peptide foldamer architectures.
机译:环状同源氨基酸是构建螺旋折叠子的重要组成部分。 N-氨基氮杂环丁烷-2-羧酸(AAzC)是反式-2-氨基环丁烷羧酸(tACBC)的氮杂类似物,具有很强的肼基转角构象特征,建议用作8螺旋引物。研究了带有单个N-末端AAzC残基的tACBC寡聚物,以评估AAzC沿寡肽长度诱导和支持8螺旋的能力。尽管tACBC同源寡聚体假定为占主导地位的12螺旋构象,但氮杂引发的寡聚体优先采用稳定的8螺旋构象,以使寡聚体长度最多为6个残基。因此,tACBC低聚物N末端的(正式)单原子交换有助于8螺旋的可持续性,从而阻止了向12螺旋的转换。该效果说明了原子级可编程设计,可用于微调肽折叠器结构。

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