Vallakati Ravikrishna, Lundy Brian J, Jansone-Popova Santa, May Jeremy A
Department of Chemistry, University of Houston, 136 Fleming Building, Houston, TX, 77204-5003, USA.
Chirality. 2015 Jan;27(1):14-7. doi: 10.1002/chir.22134. Epub 2013 Mar 26.
A strategy allowing both stereocontrol and control over structural isomer formation has been defined for the antimalarial flindersial alkaloids. The recently reported flinderoles were demonstrated to be derived from the natural product borrerine. The structural isomers of flinderoles, the borreverines, were also produced in vitro along with the flinderoles through the dimerization of borrerine in acidic conditions. This result is thought to replicate the biosynthesis of these compounds. Flinderoles A, B, and C, desmethylflinderole C, isoborreverine, and dimethylisoborreverine can each be synthesized in three steps from tryptamine. Furthermore, progress toward a concise enantioselective synthesis of flinderoles A, B, and C is described. This work includes enantioselective conjugate addition to an unprotected indole-appended enone.
已为抗疟药弗林德西生物碱定义了一种既能实现立体控制又能控制结构异构体形成的策略。最近报道的弗林德醇被证明源自天然产物博勒碱。弗林德醇的结构异构体——博勒维林,在酸性条件下通过博勒碱的二聚反应,与弗林德醇一起在体外生成。这一结果被认为重现了这些化合物的生物合成过程。弗林德醇A、B和C、去甲基弗林德醇C、异博勒维林和二甲基异博勒维林均可由色胺经三步合成。此外,还描述了在简洁对映选择性合成弗林德醇A、B和C方面取得的进展。这项工作包括对未保护的吲哚连接烯酮进行对映选择性共轭加成。