School of Physical Science and Technology, ShanghaiTech University, Shanghai, 201210, China.
University of Chinese Academy of Sciences, 100049, Beijing, China.
Nat Commun. 2020 Nov 2;11(1):5527. doi: 10.1038/s41467-020-19294-8.
Chiral molecules with multiple stereocenters are widely present in natural products and pharmaceuticals, whose absolute and relative configurations are both critically important for their physiological activities. In spite of the fact that a series of ingenious strategies have been developed for asymmetric diastereodivergent catalysis, most of these methods are limited to the divergent construction of point chirality. Here we report an enantioselective and diastereodivergent synthesis of trisubstituted allenes by asymmetric additions of oxazolones to activated 1,3-enynes enabled by chiral phosphoric acid (CPA) catalysis, where the divergence of the allenic axial stereogenicity is realized by modifications of CPA catalysts. Density functional theory (DFT) calculations are performed to elucidate the origin of diastereodivergence by the stacking- and stagger-form in the transition state (TS) of allene formation step, as well as to disclose a Münchnone-type activation mode of oxazolones under Brønsted acid catalysis.
具有多个手性中心的手性分子广泛存在于天然产物和药物中,其绝对和相对构型对于它们的生理活性都至关重要。尽管已经开发出一系列巧妙的策略用于不对称非对映选择性催化,但这些方法大多数仅限于点手性的发散构建。在这里,我们报道了通过手性磷酸(CPA)催化实现的恶唑酮对活化的 1,3-烯炔的不对称加成反应,以对映选择性和非对映选择性方式合成三取代的丙二烯,其中通过对 CPA 催化剂的修饰实现了丙二烯轴向立体化学的发散。通过对丙二烯形成步骤过渡态(TS)中的堆积和交错形式进行密度泛函理论(DFT)计算,阐明了非对映选择性发散的起源,并揭示了 Brønsted 酸催化下恶唑酮的 Münchnone 型活化模式。