School of Pharmacy, Lanzhou University , Lanzhou, 73000, China.
Anal Chem. 2018 Feb 20;90(4):2954-2962. doi: 10.1021/acs.analchem.7b05465. Epub 2018 Feb 7.
Organelles often feature parameters pertinent to functions and yet responsive to biochemical stress. The electropotential across the mitochondrial membrane (ΔΨm) is a crucial mediator of cell fates. Herein we report a bioorthogonal reaction enabled fluorescence-on probing of ΔΨm alterations featuring anionic fluorescein-triphenylphosphonium diad (F-TPP), which is released via intramitochondria Staudinger reaction triggered self-immolation of o-azidomethylbenzoylated F-TPP. Compared to classical cationic mitochondria-specific dyes, F-TPP is hydrophilic and negatively charged. Effectively discerning ΔΨm changes upon diverse stress inducers, the organelle-directed bioorthogonal imaging strategy offers unprecedented choices to probe mitochondrial biology with functional molecules that are otherwise inaccessible via physiological organelle-probe affinity.
细胞器通常具有与功能相关的参数,并且对生化应激有反应。线粒体膜的跨膜电势(ΔΨm)是细胞命运的关键调节者。在此,我们报告了一种生物正交反应,可通过带有负电荷的荧光素-三苯基膦二联体(F-TPP)对 ΔΨm 变化进行荧光开启探测,该二联体通过线粒体中的施蒂丁格反应释放,该反应触发 o-叠氮甲基苯甲酰化 F-TPP 的自燃烧。与经典的阳离子线粒体特异性染料相比,F-TPP 具有亲水性和负电性。该细胞器定向的生物正交成像策略能够有效区分不同应激诱导剂下的 ΔΨm 变化,为使用原本无法通过生理细胞器探针亲和力获得的功能分子来探测线粒体生物学提供了前所未有的选择。