化学
生物正交化学
醌甲酰胺
亲脂性
取代基
动力学
亲核细胞
位阻效应
化学动力学
组合化学
生物物理学
立体化学
有机化学
点击化学
醌
催化作用
生物
物理
量子力学
作者
Di Shen,Qun Zhao,Huaiyue Zhang,Ci Wu,Hao Jin,Kun Guo,Rui Sun,Hengke Guo,Qi Zhao,Huan Feng,Xuepeng Dong,Zhenming Gao,Lihua Zhang,Yu Liu
标识
DOI:10.1073/pnas.2420861122
摘要
Most bioorthogonal photouncaging reactions preferentially occur in polar environments to accommodate biological applications in the aqueous cellular milieu. However, they are not precisely designed to chemically adapt to the diverse microenvironments of the cell. Herein, we report a hydrophobic photouncaging reaction with tailored photolytic kinetics toward solvent polarity. Structural modulations of the aminobenzoquinone-based photocage reveal the impact of cyclic ring size, steric substituent, and electronic substituent on the individual uncaging kinetics ( k H2O and k dioxane ) and polarity preference ( k dioxane / k H2O ). Rational incorporation of optimized moieties leads to up to 20.2-fold nonpolar kinetic selectivity ( k dioxane / k H2O ). Further photochemical spectroscopic characterizations and theoretical calculations together uncover the mechanism underlying the polarity-dependent uncaging kinetics. The uncaged ortho-quinone methide product bears covalent reactivity toward diverse nucleophiles of a protein revealed by tandem mass spectrometry. Finally, we demonstrate the application of such lipophilic photouncaging chemistry toward selective labeling and profiling of proteins in proximity to lipid droplets inside human fatty liver tissues. Together, this work studies the solvent polarity effects of a photouncaging reaction and chemically adapts it toward suborganelle-targeted protein proximity labeling and profiling.
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