刺激控制的阴离子结合和运输的合成受体。
Stimulus-Controlled Anion Binding and Transport by Synthetic Receptors.
机构信息
Leiden Institute of Chemistry, Leiden University, Einsteinweg 55, 2333 CC Leiden, The Netherlands.
出版信息
Chem Rev. 2023 Jul 12;123(13):8530-8574. doi: 10.1021/acs.chemrev.3c00039. Epub 2023 Jun 21.
Anionic species are omnipresent and involved in many important biological processes. A large number of artificial anion receptors has therefore been developed. Some of these are capable of mediating transmembrane transport. However, where transport proteins can respond to stimuli in their surroundings, creation of synthetic receptors with stimuli-responsive functions poses a major challenge. Herein, we give a full overview of the stimulus-controlled anion receptors that have been developed thus far, including their application in membrane transport. In addition to their potential operation as membrane carriers, the use of anion recognition motifs in forming responsive membrane-spanning channels is discussed. With this review article, we intend to increase interest in transmembrane transport among scientists working on host-guest complexes and dynamic functional systems in order to stimulate further developments.
阴离子物种无处不在,参与许多重要的生物过程。因此,已经开发出大量的人工阴离子受体。其中一些能够介导跨膜转运。然而,在可以响应周围环境刺激的转运蛋白的情况下,创建具有刺激响应功能的合成受体则是一个重大挑战。本文全面概述了迄今为止开发的受刺激控制的阴离子受体,包括它们在膜转运中的应用。除了作为膜载体的潜在应用外,本文还讨论了在形成响应性跨膜通道时阴离子识别基序的使用。通过这篇综述文章,我们希望提高从事主体-客体配合物和动态功能系统研究的科学家对跨膜转运的兴趣,以激发进一步的发展。