Department of Pharmaceutical Sciences, School of Pharmacy, East China University of Sciences & Technology, Shanghai 200237, China.
J Org Chem. 2010 Jan 15;75(2):368-74. doi: 10.1021/jo902118x.
The development of efficient methods for the facile construction of important molecular frameworks is an important goal in organic synthesis. Chiral 3-substituted phthalides are widely distributed in a large collection of natural products with broad, potent, and potentially path-pointing biological activities. In this investigation, we have uncovered an unprecedented organocatalytic asymmetric aldol-lactonization reaction of 2-formylbenzoic esters with ketones/aldehydes for convenient construction of the enantioenriched "privileged" scaffold. As a result of the sensitive nature of substrate structures of an organocatalytic enantioselective aldol reaction, after extensive optimization of reaction conditions, catalyst L-prolinamide alcohol IV is identified as the best promoter. Interestingly, it is found that in this reaction, addition of an acid additive PhCO(2)H can significantly enhance reaction efficiency with use of only as low as 2.5 mol % IV for the process. Moreover, due to the sensitivity of reaction conditions toward a sequential aldol-lactonization process without affecting enantioselectivity and racemization, it is essential to remove the catalyst for the subsequent facile lactonization reaction in the presence of K(2)CO(3). The aldol-lactonization processes serve as a powerful approach to the preparation of synthetically and biologically important 3-substituted phthalides with a high level of enantioselectivities. A 3-step catalytic asymmetric synthesis of the natural product of 3-butylphthalide is reported.
发展高效的方法来构建重要的分子框架是有机合成中的一个重要目标。手性 3-取代邻苯二甲酸酯广泛存在于大量具有广泛、有效和潜在指向性生物活性的天然产物中。在这项研究中,我们发现了一种前所未有的有机催化不对称醛醇缩合反应,用于方便地构建对映富集的“特权”支架。由于有机催化对映选择性醛醇反应的底物结构敏感,我们经过广泛的反应条件优化,确定了 L-脯氨酰胺醇 IV 是最佳的促进剂。有趣的是,我们发现,在这个反应中,添加酸添加剂 PhCO(2)H 可以显著提高反应效率,仅使用 2.5 mol%的 IV 即可进行反应。此外,由于反应条件对连续醛醇缩合过程的敏感性,在不影响对映选择性和外消旋化的情况下,在存在 K(2)CO(3)的情况下,去除催化剂对于后续的简便内酯化反应是至关重要的。醛醇缩合过程是制备具有高对映选择性的合成和生物重要的 3-取代邻苯二甲酸酯的有力方法。我们报道了天然产物 3-正丁基邻苯二甲酸酯的三步催化不对称合成。