Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands.
Chem Commun (Camb). 2022 Oct 4;58(79):11045-11058. doi: 10.1039/d2cc04329g.
The linkage of two identical binding motifs by a molecular photoswitch has proven to be a straightforward and versatile strategy to control substrate binding affinity by light. Stimulus control of binding properties in artificial receptors is partly inspired by the dynamic behavior of proteins and is highly attractive as it could, for example, improve extraction processes and allow (de)activation of membrane transport on demand. This feature article summarizes the development and design principles of molecular tweezers containing a molecular photoswitch as the core unit. Besides the control of binding affinity by isomerization, the effect of substrate binding on the isomerization behavior is discussed where data is available. While the latter often receives less attention, it could be of benefit in the future creation of multi-stimuli-controlled molecular switching and machine-like systems.
通过分子光开关将两个相同的结合基序连接起来,已被证明是一种通过光控制底物结合亲和力的简单而通用的策略。人工受体中结合特性的刺激控制部分受到蛋白质动态行为的启发,这非常有吸引力,因为它可以例如,改善提取过程并允许按需激活或失活膜运输。本文总结了包含分子光开关作为核心单元的分子夹的开发和设计原则。除了通过异构化控制结合亲和力外,还讨论了在有数据可用的情况下底物结合对异构化行为的影响。虽然后者通常受到较少关注,但它可能有助于未来创建多刺激控制的分子开关和机器样系统。