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α/β/γ-肽中环骨架模式和残基取代对螺旋性的影响。

Impact of Backbone Pattern and Residue Substitution on Helicity in α/β/γ-Peptides.

机构信息

Department of Chemistry, University of Wisconsin-Madison , Madison, Wisconsin 53706, United States.

出版信息

J Am Chem Soc. 2018 Jan 31;140(4):1394-1400. doi: 10.1021/jacs.7b10868. Epub 2018 Jan 19.

Abstract

We have evaluated the impact of changes in the chemical structure of peptidic oligomers containing α-, β-, and γ-amino acid residues (α/β/γ-peptides) on the propensities of these oligomers to adopt helical conformations in aqueous and alcoholic solutions. These studies were inspired by our previous discovery that α/β/γ-peptides containing a regular αγααβα hexad repeat adopt an α-helix-like conformation in which the β and γ residues are aligned in a stripe along one side, and the remainder of the helix surface is defined by the α residues. This helix was found to be most stable when the β and γ residues were rigidified with specific cyclic constraints. Relaxation of the β residue constraints caused profound conformational destabilization, but relaxation of the γ residue constraints led to only a moderate drop in helicity. The new work more broadly characterizes the effect of γ residue substitution on helix stability, based on circular dichroism and two-dimensional NMR measurements. We find that even a fully unsubstituted γ residue (derived from γ-aminobutyric acid) supports a moderate helical propensity, which is surprising in light of the strong destabilizing effect of glycine residues on α-helix stability. Additional studies examine the effects of altering sequence in terms of amino acid type, by comparing a prototype with the αγααβα hexad pattern to isomers with irregular arrangements of the α, β, and γ residues along the backbone. The data indicate that the strong helix-forming propensity previously discovered for α/β/γ-peptide 12-mers is retained when sequence is varied, with small variations detected across diverse α-β-γ placements. These structural findings suggest that α/β/γ-peptide scaffolds represent versatile scaffolds for the design of peptidic foldamers that display specific functions.

摘要

我们评估了含有α-、β-和γ-氨基酸残基的肽寡聚物(α/β/γ-肽)的化学结构变化对这些寡聚物在水和醇溶液中形成螺旋构象的倾向的影响。这些研究的灵感来自我们之前的发现,即含有规则的 αγααβα 六肽重复的α/β/γ-肽在α-螺旋样构象中采取类似α-螺旋的构象,其中β和γ残基沿一侧排列在一条条纹中,其余的螺旋表面由α残基定义。当β和γ残基用特定的环状约束固定时,这种螺旋是最稳定的。β残基约束的松弛导致构象严重失稳,但γ残基约束的松弛仅导致螺旋度适度下降。新的工作更广泛地描述了γ残基取代对螺旋稳定性的影响,基于圆二色性和二维 NMR 测量。我们发现,即使是完全未取代的γ残基(来源于γ-氨基丁酸)也支持适度的螺旋倾向,这与甘氨酸残基对α-螺旋稳定性的强烈去稳定作用形成鲜明对比,令人惊讶。进一步的研究通过比较原型与 αγααβα 六肽模式来研究改变序列中氨基酸类型的影响,该原型与沿主链排列的α、β和γ残基不规则排列的异构体进行比较。数据表明,当序列发生变化时,α/β/γ-肽 12 聚体先前发现的强螺旋形成倾向得以保留,在不同的α-β-γ位置检测到微小的变化。这些结构发现表明,α/β/γ-肽支架是设计具有特定功能的肽折叠体的多功能支架。

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