Rational Design of a Dual-Reactivity-Based Fluorescent Probe for Visualizing Intracellular HSNO

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Abstract

Thionitrous acid (HSNO), the smallest S-nitrosothiol, is emerging as a potential key intermediate in cellular redox regulation linking two signaling molecules H2S and NO. However, the chemical biology of HSNO remains poorly understood. A major hurdle is the lack of methods for selective detection of HSNO in biological systems. Herein, we report the rational design, synthesis, and evaluation of the first fluorescent probe TAP-1 for HSNO detection. TAP-1 showed high selectivity and sensitivity to HSNO in aqueous media and cells, providing a useful tool for understanding the functions of HSNO in biology.

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Chen, W., Matsunaga, T., Neill, D. L., Yang, C. tao, Akaike, T., & Xian, M. (2019). Rational Design of a Dual-Reactivity-Based Fluorescent Probe for Visualizing Intracellular HSNO. Angewandte Chemie - International Edition, 58(45), 16067–16070. https://doi.org/10.1002/anie.201908950

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