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芳族寡酰胺 β-折叠构象体。

Aromatic oligoamide β-sheet foldamers.

机构信息

Université de Bordeaux , CBMN (UMR 5248), Institut Européen de Chimie Biologie, 2 rue Escarpit, 33600 Pessac, France.

出版信息

J Am Chem Soc. 2014 Feb 5;136(5):2168-74. doi: 10.1021/ja412729s. Epub 2014 Jan 23.

Abstract

A rational approach for the construction of multi-stranded artificial β-sheets based not on hydrogen bonding, but rather on π-π aromatic stacking, is presented. Using 4,6-dinitro-1,3-phenylenediamine units, rigid turns were designed that allow face-to-face π-π interactions between appended linear aromatic segments to be strong enough for folding in an organic solvent, but weak enough to prevent aggregation and precipitation. Solution and solid-state studies on a series of turn units showed that the desired degree of rigidity, resulting from hindered bond rotation, could be fine-tuned by the inclusion of additional methyl substituents on the aromatic rings. The high degree of preorganization afforded by these qualities further allowed the facile preparation of macrocyclic sheet structures from their noncyclic precursors. These macrocycles were shown to have slow internal dynamics and defined conformational preferences. Using this background, three- and five-stranded artificial β-sheets were synthesized and their folded conformations extensively characterized in solution by NMR. The solid-state structures of the three- and five-stranded sheets were also elucidated in the solid state by X-ray crystallography and confirmed intramolecular π-π aromatic stacking.

摘要

本文提出了一种基于π-π 堆积而不是氢键构建多股人工 β-折叠的合理方法。利用 4,6-二硝基-1,3-苯二胺单元,设计了刚性转角,使附加的线性芳族片段之间的面对面 π-π 相互作用足够强,足以在有机溶剂中折叠,但又足够弱,以防止聚集和沉淀。一系列转角单元的溶液和固态研究表明,通过在芳环上增加额外的甲基取代基,可以精细调节所需的刚性程度,这是由于受阻的键旋转。这些特性提供的高度预组织进一步允许从它们的非环状前体容易地制备大环片状结构。这些大环显示出缓慢的内部动力学和明确的构象偏好。在此背景下,合成了三股和五股人工 β-折叠,并通过 NMR 在溶液中对其折叠构象进行了广泛的表征。还通过 X 射线晶体学阐明了三股和五股片状结构在固态下的结构,并证实了分子内 π-π 芳族堆积。

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