Abstract
Tools to enable spatiotemporally controlled upregulation of supersulfides, which are highly reactive, unstable sulfur species, are needed to study the pathophysiological roles of post-translational protein modification with catenated sulfur atoms. Here, we set out to design N,N-diethylaminocoumarin (DEAC)-based visible-light-responsive N-acetylcysteine persulfide donors (NAC-SS-DEAC), and serendipitously found that upon visible light irradiation, they donate a sulfane sulfur (S0) atom to nucleophiles, including thiols and cyanate. Light-assisted tautomerization of the disulfide moiety of NAC-SS-DEAC to transiently afford unstable thiosulfoxide plays a key role in the S0 donation. We show that this reaction can be utilized to achieve visible-light-inducible manipulation of supersulfide levels in living cells.
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CITATION STYLE
Kawaguchi, M., Yoshino, K., Ida, T., Moriyama, H., Ieda, N., Ohta, Y., … Nakagawa, H. (2025). Serendipitous Discovery of Photolytic Thiosulfoxide Formation: Application for Visible-Light-Inducible Manipulation of Supersulfide Level in Biological Systems. Journal of the American Chemical Society, 147(15), 12627–12634. https://doi.org/10.1021/jacs.5c00196
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