Teng Shun, Shultz Zachary P, Shan Chuan, Wojtas Lukasz, Lopchuk Justin M
Department of Chemistry, University of South Florida, Tampa, FL, USA.
Drug Discovery Department, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL, USA.
Nat Chem. 2024 Feb;16(2):183-192. doi: 10.1038/s41557-023-01419-3. Epub 2024 Jan 18.
An increased interest to expand three-dimensional chemical space for the design of new materials and medicines has created a demand for isosteric replacement groups of commonly used molecular functionality. The structural and chemical properties of chiral S(VI) functional groups provide unique spatial and electronic features compared with their achiral sulfur- and carbon-based counterparts. Manipulation of the S(VI) centre to introduce structural variation with stereochemical control has remained a synthetic challenge. The stability of sulfonimidoyl fluorides and the efficiency of sulfur fluorine exchange chemistry has enabled the development of the enantiopure bifunctional S(VI) transfer reagent t-BuSF to overcome current synthetic limitations. Here, we disclose a reagent platform that serves as a chiral sulfur fluorine exchange template for the rapid asymmetric synthesis of over 70 sulfoximines, sulfonimidoyl fluorides and sulfonimidamides with excellent enantiomeric excess and good overall yields. Furthermore, the practical utility of the bifunctional S(VI) transfer reagent was demonstrated in the syntheses of enantiopure pharmaceutical intermediates and analogues.
为设计新材料和药物而拓展三维化学空间的兴趣日增,这就产生了对常用分子功能的等排取代基团的需求。与非手性的硫基和碳基对应物相比,手性S(VI)官能团的结构和化学性质提供了独特的空间和电子特性。在立体化学控制下操纵S(VI)中心以引入结构变化仍然是一个合成挑战。磺酰亚胺基氟化物的稳定性以及硫氟交换化学的效率促使了对映体纯的双功能S(VI)转移试剂t-BuSF的开发,以克服当前的合成限制。在此,我们披露了一个试剂平台,它作为手性硫氟交换模板,可快速不对称合成70多种亚砜亚胺、磺酰亚胺基氟化物和磺酰亚胺酰胺,对映体过量优异,总产率良好。此外,双功能S(VI)转移试剂在对映体纯药物中间体和类似物的合成中展示了实际效用。