Huang He-Sen, Yuan Yi, Wang Wei, Zhang Shi-Qi, Nie Xiao-Kang, Yang Wan-Ting, Cui Xin, Tang Zhuo, Li Guang-Xun
Chengdu Institution of Biology, Chinese Academy of Science, Chengdu, Sichuan, 610041, China.
Key Laboratory of Chemical Metrology and Applications on Nutrition and Health for State Market Regulation, Beijing, 100029, China.
Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202415873. doi: 10.1002/anie.202415873. Epub 2024 Nov 18.
Sulfur-centered electrophilic 'warheads' have emerged as key components for chemical proteomic probes through sulfur-exchange chemistry (SuFEx) with protein nucleophiles. Among these functional groups, sulfonimidoyl fluorides (SIFs) stand out for their modifiable sites, tunable electrophilicities, and chiral sulfur-center, presenting exciting possibilities for new covalent chemical probes. However, the synthetic access to chiral SIFs has been a challenge, limiting their exploration and applications. In this study, we describe a convenient route to obtain chiral SIFs from readily available sulfenamides via a series of one-pot tandem reactions with high enantiomeric excess (ees). The resulting chiral SIFs were further converted into a diverse array of chiral S(VI) derivatives under mild conditions or in buffer solutions. Most significantly, the specificity of the chiral SIFs in protein ligation experiments underscored the critical role of sulfur-center chirality in the design and screening of more-selective covalent probes and therapeutics.
以硫为中心的亲电“弹头”已成为化学蛋白质组学探针的关键组成部分,通过与蛋白质亲核试剂的硫交换化学(SuFEx)发挥作用。在这些官能团中,磺酰亚胺基氟化物(SIFs)因其可修饰位点、可调亲电性和手性硫中心而脱颖而出,为新型共价化学探针提供了令人兴奋的可能性。然而,合成手性SIFs一直是一个挑战,限制了它们的探索和应用。在本研究中,我们描述了一条便捷的路线,通过一系列一锅串联反应,从容易获得的亚磺酰胺中获得具有高对映体过量(ee)的手性SIFs。所得的手性SIFs在温和条件下或缓冲溶液中进一步转化为多种手性S(VI)衍生物。最重要的是,手性SIFs在蛋白质连接实验中的特异性突出了硫中心手性在设计和筛选更具选择性的共价探针及治疗药物中的关键作用。