Reggelin Michael, Junker Bernd, Heinrich Timo, Slavik Stefan, Bühle Philipp
Clemens-Schöpf-Institute of Organic Chemistry and Biochemistry, Technical University of Darmstadt, Petersenstrasse 22, 64287 Darmstadt, Germany.
J Am Chem Soc. 2006 Mar 29;128(12):4023-34. doi: 10.1021/ja057012a.
The application of metalated, enantiomerically pure acyclic and cyclic 2-alkenyl sulfoximines for the synthesis of highly substituted aza(poly)cyclic ring systems is described. The method relies on a one-pot combination of a reagent-controlled allyl transfer reaction to alpha- or beta-amino aldehydes, followed by a Michael-type cyclization of the intermediate vinyl sulfoximines generated in the first step. The sulfur-free target compounds are preferentially obtained by samarium iodide treatment of the sulfonimidoyl substituted heterocycles. In addition to this methodological work, initial results on the biological activity of selected examples are reported. Furthermore, a concept for the transformation of peptidic lead structures into non-peptide mimetics is described, and the relevance of the new approach to highly substituted azaheterocycles in this context is discussed.
描述了金属化的、对映体纯的无环和环状2-烯基磺胺氧化亚胺在合成高度取代的氮杂(多)环系统中的应用。该方法依赖于试剂控制的烯丙基转移反应与α-或β-氨基醛的一锅组合,随后第一步生成的中间体乙烯基磺胺氧化亚胺进行迈克尔型环化反应。通过用碘化钐处理磺酰亚胺基取代的杂环优先获得无硫目标化合物。除了这项方法学工作外,还报告了所选实例的生物活性初步结果。此外,描述了将肽类先导结构转化为非肽模拟物的概念,并讨论了这种新方法在高度取代氮杂环方面的相关性。