Davis Alexander R, Ozturk Sena, Seaton Colin C, Male Louise, Pike Sarah J
School of Chemistry, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.
School of Chemistry and Biosciences, Faculty of Life Sciences, University of Bradford, Bradford, West Yorkshire, BD7 1DP, UK.
Chemistry. 2024 Dec 5;30(68):e202402892. doi: 10.1002/chem.202402892. Epub 2024 Nov 7.
Developing new methods to control the size and shape of the helical structures adopted by foldamers is highly important as the secondary structure displayed by these supramolecular scaffolds often dictates their activity and function. Herein, we report on a systematic study demonstrating that the helical pitch of ortho-azobenzene/2,6-pyridyldicarboxamide foldamers can be readily controlled through the nature of the terminal functionality. Remarkably, simply through varying the end group of the foldamer, and without modifying any other structural features of the scaffold, the helical pitch can be over doubled in magnitude (from 3.4 Å-7.3 Å). Additionally, crystallographic analysis of a library ten foldamers has identified general trends in the influence of a range of terminal functionalities, including carboxylbenzyl (Cbz), diphenylcarbamyl (N(Ph)), ferrocene (Fc) and tert-butyloxycarbonyl (Boc), in controlling the folding behaviour of these supramolecular scaffolds. These studies could prove useful in the future development of functional foldamers which adopt specific sizes and shapes.
开发新方法来控制折叠体所采用的螺旋结构的尺寸和形状非常重要,因为这些超分子支架所展示的二级结构通常决定了它们的活性和功能。在此,我们报告一项系统研究,该研究表明邻位偶氮苯/2,6-吡啶二甲酰胺折叠体的螺旋螺距可以通过末端官能团的性质轻松控制。值得注意的是,仅仅通过改变折叠体的端基,而不改变支架的任何其他结构特征,螺旋螺距的大小可以增加一倍以上(从3.4 Å到7.3 Å)。此外,对十个折叠体文库的晶体学分析已经确定了一系列末端官能团(包括羧基苄基(Cbz)、二苯基甲酰基(N(Ph))、二茂铁(Fc)和叔丁氧羰基(Boc))在控制这些超分子支架折叠行为方面的一般趋势。这些研究可能对未来开发采用特定尺寸和形状的功能性折叠体有用。