Department of Chemistry and Chemical Biology, Harvard University, Cambridge, Massachusetts 02138, United States.
J Am Chem Soc. 2020 May 20;142(20):9175-9180. doi: 10.1021/jacs.0c03991. Epub 2020 May 6.
A precisely designed chiral squaramide derivative is shown to promote the highly enantioselective addition of trimethylsilyl bromide (TMSBr) to a broad variety of 3-substituted and 3,3-disubstituted oxetanes. The reaction provides direct and general access to synthetically valuable 1,3-bromohydrin building blocks from easily accessed achiral precursors. The products are readily elaborated both by nucleophilic substitution and through transition-metal-catalyzed cross-coupling reactions. The enantioselective catalytic oxetane ring opening was employed as part of a three-step, gram-scale synthesis of pretomanid, a recently approved medication for the treatment of multidrug-resistant tuberculosis. Heavy-atom kinetic isotope effect (KIE) studies are consistent with enantiodetermining delivery of bromide from the H-bond-donor (HBD) catalyst to the activated oxetane. While the nucleophilicity of the bromide ion is expected to be attenuated by association to the HBD, overall rate acceleration is achieved by enhancement of Lewis acidity of the TMSBr reagent through anion abstraction.
一种精确设计的手性 squaramide 衍生物被证明可以促进三甲基溴硅烷 (TMSBr) 对广泛的 3-取代和 3,3-二取代氧杂环丁烷的高对映选择性加成。该反应为从易得的非手性前体直接获得具有合成价值的 1,3-溴醇构建块提供了通用方法。产物可以通过亲核取代和过渡金属催化交叉偶联反应进行轻松修饰。对映选择性催化开环反应被用于三步、克规模合成 pretomanid 的一部分,pretomanid 是最近批准用于治疗耐多药结核病的药物。重原子动力学同位素效应 (KIE) 研究与从氢键供体 (HBD) 催化剂向活化氧杂环丁烷传递溴的对映体决定一致。虽然溴离子的亲核性预计会因与 HBD 结合而减弱,但通过阴离子消除增强 TMSBr 试剂的路易斯酸度,实现了整体反应速率的加速。