Bretzke Sebastian, Scheeff Stephan, Vollmeyer Felicitas, Eberhagen Friederike, Rominger Frank, Menche Dirk
Institut für Organische Chemie, Ruprecht-Karls Universität Heidelberg, Im Neuenheimer Feld 270, 69120 Heidelberg, Germany.
Kekulé-Institut für Organische Chemie und Biochemie, Universität Bonn, Gerhard-Domagk-Strasse 1, 53121 Bonn, Germany.
Beilstein J Org Chem. 2016 Jun 2;12:1111-21. doi: 10.3762/bjoc.12.107. eCollection 2016.
The design, development and application of an efficient procedure for the concise synthesis of the 1,3-syn- and anti-tetrahydropyrimidine cores of manzacidins are reported. The intramolecular allylic substitution reaction of a readily available joint urea-type substrate enables the facile preparation of both diastereomers in high yields. The practical application of this approach is demonstrated in the efficient and modular preparation of the authentic heterocyclic cores of manzacidins, structurally unique bromopyrrole alkaloids of marine origin. Additional features of this route include the stereoselective generation of the central amine core with an appending quaternary center by an asymmetric addition of a Grignard reagent to a chiral tert-butanesulfinyl ketimine following an optimized Ellman protocol and a cross-metathesis of a challenging homoallylic urea substrate, which proceeds in good yields in the presence of an organic phosphoric acid.
报道了一种用于简洁合成曼扎西丁1,3-顺式和反式四氢嘧啶核心的高效方法的设计、开发及应用。一种易于获得的联合脲型底物的分子内烯丙基取代反应能够以高收率轻松制备两种非对映异构体。该方法的实际应用体现在高效且模块化地制备曼扎西丁真正的杂环核心上,曼扎西丁是结构独特的海洋来源溴吡咯生物碱。该路线的其他特点包括:按照优化的埃尔曼方案,通过格氏试剂对手性叔丁基亚磺酰基酮亚胺进行不对称加成,立体选择性地生成带有附加季碳中心的中心胺核心;以及具有挑战性的高烯丙基脲底物的交叉复分解反应,该反应在有机磷酸存在下能以良好的收率进行。