Ramachary D B, Anebouselvy K, Chowdari Naidu S, Barbas Carlos F
The Skaggs Institute for Chemical Biology and the Departments of Chemistry and Molecular Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037.
J Org Chem. 2004 Sep 3;69(18):5838-49. doi: 10.1021/jo049581r.
Amino acids and amines have been used to catalyze three component hetero-domino Knoevenagel/Diels-Alder/epimerization reactions of readily available various precursor enones (1a-l), aldehydes (2a-p), and 1,3-indandione (3). The reaction provided excellent yields of highly substituted, symmetrical and nonsymmetrical spiro[cyclohexane-1,2'-indan]-1',3',4-triones (5) in a highly diastereoselective fashion with low to moderate enantioselectivity. The Knoevenagel condensation of arylaldehydes (2a-p) and 1,3-indandione (3) under organocatalysis provided arylidene-1,3-indandiones (17) in very good yields. We demonstrate for the first time amino acid- and amine-catalyzed epimerization reactions of trans-spiranes (6) to cis-spiranes (5). The mechanism of conversion of trans-spiranes (6) to cis-spiranes 5 was shown to proceed through a retro-Michael/Michael reaction rather than deprotonation/reprotonation by isolation of the morpholine enamine intermediate of cis-spirane (22). Prochiral cis-spiranes (5ab) and trans-spiranes (6ab) are excellent starting materials for the synthesis of benzoannelated centropolyquinanes. Under amino acid and amine catalysis, the topologically interesting dispirane 24 was prepared in moderate yields. Organocatalysis with pyrrolidine catalyzed a series of four reactions, namely the Michael/retro-Michael/Diels-Alder/epimerization reaction sequence to furnish cis-spirane 5ab in moderate yield from enone 1a and 1,3-indandione 3.
氨基酸和胺已被用于催化各种易得的前体烯酮(1a - l)、醛(2a - p)和1,3 - 茚二酮(3)的三组分杂多米诺Knoevenagel/狄尔斯 - 阿尔德/差向异构化反应。该反应以高非对映选择性的方式提供了高产率的高度取代的、对称和不对称的螺[环己烷 - 1,2'-茚满]-1',3',4 - 三酮(5),对映选择性低至中等。在有机催化下,芳基醛(2a - p)和1,3 - 茚二酮(3)的Knoevenagel缩合反应以非常高的产率提供了亚芳基 - 1,3 - 茚二酮(17)。我们首次证明了氨基酸和胺催化反式螺环(6)向顺式螺环(5)的差向异构化反应。通过分离顺式螺环(22)的吗啉烯胺中间体表明,反式螺环(6)向顺式螺环5的转化机制是通过逆迈克尔/迈克尔反应进行的,而不是去质子化/再质子化。前手性顺式螺环(5ab)和反式螺环(6ab)是合成苯并稠合中心多醌的优良起始原料。在氨基酸和胺催化下,以中等产率制备了拓扑结构有趣的双螺环24。用吡咯烷进行的有机催化促进了一系列四个反应,即迈克尔/逆迈克尔/狄尔斯 - 阿尔德/差向异构化反应序列,以中等产率从烯酮1a和1,3 - 茚二酮3制备顺式螺环5ab。