School of Chemistry, University of Bristol, Cantock's Close, Bristol, BS8 1TS, UK.
Chem Soc Rev. 2023 Apr 3;52(7):2480-2496. doi: 10.1039/d2cs00982j.
Biological systems have evolved a number of different strategies to communicate information on the molecular scale. Among these, the propagation of conformational change is among the most important, being the means by which G-protein coupled receptors (GPCRs) use extracellular signals to modulate intracellular processes, and the way that opsin proteins translate light signals into nerve impulses. The developing field of foldamer chemistry has allowed chemists to employ conformationally well-defined synthetic structures likewise to mediate information transfer, making use of mechanisms that are not found in biological contexts. In this review, we discuss the use of switchable screw-sense preference as a communication mechanism. We discuss the requirements for functional communication devices, and show how dynamic helical foldamers derived from the achiral monomers such as α-aminoisobutyric acid (Aib) and -cyclohexane-1,2-diamine fulfil them by communicating information in the form of switchable screw-sense preference. We describe the various stimuli that can be used to switch screw sense, and explore the way that propagation of the resulting conformational preference in a well-defined helical molecule allows screw sense to control chemical events remote from a source of information. We describe the operation of these conformational switches in the membrane phase, and outline the progress that has been made towards using conformational switching to communicate between the exterior and interior of a phospholipid vesicle.
生物系统已经进化出许多不同的策略来在分子水平上传递信息。在这些策略中,构象变化的传播是最重要的策略之一,它是 G 蛋白偶联受体 (GPCR) 利用细胞外信号调节细胞内过程的方式,也是视蛋白将光信号转化为神经冲动的方式。正在发展的折叠聚合物化学领域使化学家能够同样地利用构象明确的合成结构来介导信息传递,利用在生物背景中不存在的机制。在这篇综述中,我们讨论了将可切换螺旋手性偏好作为一种通讯机制的应用。我们讨论了功能通讯设备的要求,并展示了如何通过使用诸如α-氨基异丁酸(Aib)和-环己烷-1,2-二胺等非手性单体衍生的动态螺旋折叠聚合物来满足这些要求,这些聚合物通过可切换的螺旋手性偏好来传递信息。我们描述了可以用于切换螺旋手性的各种刺激,并探讨了在定义良好的螺旋分子中传播构象偏好的方式,这种方式允许螺旋手性控制远离信息源的化学事件。我们描述了这些构象开关在膜相中的操作,并概述了在使用构象切换在磷脂囊泡的内外部分之间进行通讯方面所取得的进展。