Chen Xiao-Xiao, Gomila Rosa M, García-Arcos Juan Manuel, Vonesch Maxime, Gonzalez-Sanchis Nerea, Roux Aurelien, Frontera Antonio, Sakai Naomi, Matile Stefan
Department of Organic Chemistry, University of Geneva, 1211 Geneva, Switzerland.
Departament de Química, Universitat de les Illes Balears, SP-07122 Palma de Mallorca, Spain.
JACS Au. 2023 Aug 21;3(9):2557-2565. doi: 10.1021/jacsau.3c00364. eCollection 2023 Sep 25.
Progress with fluorescent flippers, small-molecule probes to image membrane tension in living systems, has been limited by the effort needed to synthesize the twisted push-pull mechanophore. Here, we move to a higher oxidation level to introduce a new design paradigm that allows the screening of flipper probes rapidly, at best . Late-stage clicking of thioacetals and acetals allows simultaneous attachment of targeting units and interfacers and exploration of the critical chalcogen-bonding donor at the same time. Initial studies focus on plasma membrane targeting and develop the chemical space of acetals and thioacetals, from acyclic amino acids to cyclic 1,3-heterocycles covering dioxanes as well as dithiolanes, dithianes, and dithiepanes, derived also from classics in biology like cysteine, lipoic acid, asparagusic acid, DTT, and epidithiodiketopiperazines. From the functional point of view, the sensitivity of membrane tension imaging in living cells could be doubled, with lifetime differences in FLIM images increasing from 0.55 to 1.11 ns. From a theoretical point of view, the complexity of mechanically coupled chalcogen bonding is explored, revealing, among others, intriguing bifurcated chalcogen bonds.
用于在生物系统中成像膜张力的荧光翻转分子(fluorescent flippers)和小分子探针的进展一直受到合成扭曲推拉机械发色团所需努力的限制。在此,我们转向更高的氧化水平,引入一种新的设计范式,该范式能够快速筛选翻转分子探针。硫代缩醛和缩醛的后期点击反应允许同时连接靶向单元和界面剂,并同时探索关键的硫属元素键供体。初步研究聚焦于质膜靶向,并拓展了缩醛和硫代缩醛的化学空间,从无环氨基酸到环状1,3-杂环,涵盖二氧六环以及二硫戊环、二噻烷和二硫庚环,这些也源自生物学中的经典物质,如半胱氨酸、硫辛酸、天冬氨酸、二硫苏糖醇和环二硫代二酮哌嗪。从功能角度来看,活细胞中膜张力成像的灵敏度可提高一倍,荧光寿命成像(FLIM)图像中的寿命差异从0.55纳秒增加到1.11纳秒。从理论角度来看,对机械耦合硫属元素键的复杂性进行了探索,揭示了包括有趣的分叉硫属元素键在内的多种情况。