分子内力
硫醇
半胱氨酸
硫黄
化学
分解
反应中间体
组合化学
高分子化学
光化学
有机化学
催化作用
酶
作者
Long Yi,Yalun Dong,Haishun Ye,Baifan Wang,Dejun Ma,Xueying Kang,Wenfang Liang,Xuekang Cai,Shanshan Liu,Chenyang Jiang,Wenhao Du,Huatang Zhang,Hongyan Sun,Zhen Xi
标识
DOI:10.1002/ange.202422087
摘要
Endogenously generated reactive sulfur species (RSS) play critical roles in various physiological processes. RSS donors can enhance our understanding of RSS chemical biology and open new avenues for treatmenting RSS‐associated diseases. Nevertheless, general strategies for the controllable release of distinct RSS remain lacking. Herein, we present the first general platform for controllable release of RSS with oxidation states ranging from −2 to +4, based on the intramolecular thiol‐promoted decomposition of cysteine ester (ITPDC). We first rationally designed ITPDC‐based hydrogen sulfide (H2S) donors that avoid electrophilic byproducts and exhibit high H2S release efficiencies (>50%). Mechanistic investigations and density functional theory calculations elucidated the detailed pathways of pH‐controllable H2S release from ITPDC, and computational studies also predicted other H2S‐related RSS release from the ITPDC‐based motifs. Importantly, we developed a series of ITPDC‐based donors capable of releasing various RSS, including persulfide, hydrogen persulfide, sulfenic acid, sulfinic acid, and sulfur dioxide (SO2). Moreover, fluorescent imaging demonstrated the successful cellular delivery of H2S, persulfide, and SO2 from these donors, and the ITPDC‐based motif was employed to create a light‐triggered donor. We anticipate that these innovative chemistries will provide valuable tools for studying sulfur biology and for developing new RSS donors and bio‐orthogonal cleavage techniques.
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