Wang Zhe, Matsumoto Akira, Maruoka Keiji
Graduate School of Pharmaceutical Sciences, Kyoto University Sakyo Kyoto 606-8501 Japan
School of Chemical Engineering and Light Industry, Guangdong University of Technology Guangzhou 510006 China.
Chem Sci. 2020 Oct 14;11(45):12323-12328. doi: 10.1039/d0sc05137c.
A novel approach for the efficient cleavage of the amide bonds in tertiary amides is reported. Based on the selective radical abstraction of a benzylic hydrogen atom by a CuBr/Selectfluor hybrid system followed by a selective cleavage of an N-C bond, an acyl fluoride intermediate is formed. This intermediate may then be derivatized in a one-pot fashion. The reaction proceeds under mild conditions and exhibits a broad substrate scope with respect to the tertiary amide moiety as well as to nitrogen, oxygen, and carbon nucleophiles for the subsequent derivatization. Mechanistic studies suggest that the present reaction proceeds a radical-polar crossover process that involves benzylic carbon radicals generated by the selective radical abstraction of a benzylic hydrogen atom by the CuBr/Selectfluor hybrid system. Furthermore, a synthetic application of this method for the selective cleavage of peptides is described.
报道了一种有效裂解叔酰胺中酰胺键的新方法。基于CuBr/Selectfluor混合体系对苄基氢原子的选择性自由基提取,随后选择性裂解N-C键,形成酰氟中间体。然后该中间体可以一锅法进行衍生化。该反应在温和条件下进行,对于叔酰胺部分以及后续衍生化的氮、氧和碳亲核试剂具有广泛的底物范围。机理研究表明,本反应通过自由基-极性交叉过程进行,该过程涉及由CuBr/Selectfluor混合体系对苄基氢原子的选择性自由基提取产生的苄基碳自由基。此外,还描述了该方法在肽选择性裂解中的合成应用。