Aggarwal Sahil C, Khodade Vinayak S, Porche Sarah, Pharoah Blaze M, Toscano John P
Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218, United States.
J Org Chem. 2022 Oct 7;87(19):12644-12652. doi: 10.1021/acs.joc.2c01049. Epub 2022 Sep 9.
Hydropersulfides (RSSH) have received significant interest in the field of redox biology because of their intriguing biochemical properties. However, because RSSH are inherently unstable, their study is challenging, and as a result, the details of their physiological roles remain ill-defined. Herein, we report strategies to release RSSH utilizing photoremovable protecting groups. RSSH protection with the well-established -hydroxyphenacyl (HP) photoprotecting group resulted in inefficient RSSH photorelease along with complex chemistry. Therefore, an alternative precursor was examined in which a self-immolative linker was inserted between the HP group and RSSH, providing nearly quantitative RSSH release following photolysis at 365 nm. Inspired by these results, we also synthesized an analogous precursor derivatized with 7-diethylaminocoumarin (DEACM), a visible light-cleavable photoprotecting group. Photolysis of this precursor at 420 nm led to efficient RSSH release, and in vitro experiments demonstrated intracellular RSSH delivery in breast cancer MCF-7 cells.
氢过硫化物(RSSH)因其有趣的生化特性而在氧化还原生物学领域受到了广泛关注。然而,由于RSSH本身不稳定,对其进行研究具有挑战性,因此,它们的生理作用细节仍不明确。在此,我们报告了利用光可去除保护基团释放RSSH的策略。使用成熟的α-羟基苯乙酮(HP)光保护基团对RSSH进行保护,导致RSSH光释放效率低下且伴有复杂的化学反应。因此,我们研究了一种替代前体,其中在HP基团和RSSH之间插入了一个自牺牲连接基,在365nm光解后可实现几乎定量的RSSH释放。受这些结果的启发,我们还合成了一种用7-二乙氨基香豆素(DEACM)衍生化的类似前体,DEACM是一种可见光可裂解的光保护基团。该前体在420nm处光解可有效释放RSSH,体外实验证明了其在乳腺癌MCF-7细胞中的细胞内RSSH递送。