单链两性螺旋中两个相邻的d -氨基酸对肽的不稳定作用。

Peptide research Pub Date : 1996-03-01
S Rothemund, E Krause, M Beyermann, M Dathe, M Bienert, R S Hodges, B D Sykes, F D Sönnichsen
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引用次数: 0

摘要

我们最近描述了系统双d -氨基酸替代对多肽中两性螺旋表征的局部不稳定作用。本研究的目的是通过在三氟乙醇(TFE)/水中进行氢交换和盐酸胍变性研究,确定两个相邻的d -氨基酸合并到单链两亲性α -螺旋中心的不稳定作用。在30% TFE存在下的盐酸胍滴定实验数据表明,在螺旋中心的双d -氨基酸替换使二级结构不稳定4.5 kJ/mol。虽然发现一个主质子在取代位置的交换率变化了10倍,但其余的主质子不受双d -氨基酸取代的显著影响。这些结果证实了每个残基-4.5 kJ/mol的能量是螺旋肽在水和TFE/水的溶剂混合物中的稳定性的主要贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peptide destabilization by two adjacent D-amino acids in single-stranded amphipathic alpha-helices.

We recently described the local destabilizing effect of systematic double D-amino acid replacements for characterization of amphipathic helices in peptides. The objective of this study was to determine the destabilizing effect of two adjacent D-amino acids incorporated into the center of a single-stranded amphipathic alpha-helix by hydrogen exchange and guanidine hydrochloride denaturation studies in trifluoroethanol (TFE)/water. Data from guanidine hydrochloride titration experiments in the presence of 30% TFE suggest that double D-amino acid replacements at the center of the helix destabilize the secondary structure by 4.5 kJ/mol. While the exchange rate for one backbone proton was found to vary by a factor of 10 at the replacement position, the remaining backbone protons are not markedly influenced by double D-amino acid replacement. These results confirm the hypothesis that the energy of -4.5 kJ/mol per residue is a major contribution to the stability of helical peptides in water and in solvent mixtures of TFE/water.

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