Department of Chemistry, Institute of Organic Chemistry, University of Cologne, Köln, Germany.
Chemistry. 2011 Feb 25;17(9):2633-41. doi: 10.1002/chem.201003166. Epub 2011 Jan 27.
The structurally unique polyketide mumbaistatin is the strongest naturally occurring inhibitor of glucose-6-phosphate translocase-1 (G6P-T1), which is a promising target for drugs against type-2 diabetes mellitus and angiogenic processes associated with brain tumor development. Despite its high relevance, mumbaistatin has so far withstood all attempts towards its total synthesis. In the present study an efficient total synthesis of a deoxy-mumbaistatin analogue containing the complete carbon skeleton and a spirolactone motif closely resembling the natural product in its cyclized form was elaborated. Key steps of the synthesis are a Diels-Alder cycloaddition for the construction of the fully functionalized anthraquinone moiety and an anionic homo-Fries rearrangement to build up the tetra-ortho-substituted benzophenone core motif, from which a spiroketal lactone forms in a spontaneous process. The elaborated strategy opens an entry to a variety of new analogs of mumbaistatin and cyclo-mumbaistatin and may be exploited for the total synthesis of the natural product itself in the future.
结构独特的聚酮化合物芒柄菌素是葡萄糖-6-磷酸转运蛋白-1(G6P-T1)最强的天然抑制剂,G6P-T1 是治疗 2 型糖尿病和与脑肿瘤发展相关的血管生成过程的有希望的药物靶点。尽管芒柄菌素具有很高的相关性,但迄今为止,所有试图对其进行全合成的尝试都没有成功。在本研究中,详细阐述了一种含有完整碳骨架和螺内酯基序的脱氧芒柄菌素类似物的有效全合成方法,该基序在其环化形式上与天然产物非常相似。合成的关键步骤是 Diels-Alder 环加成反应,用于构建完全功能化的蒽醌部分,以及阴离子同系物 Fries 重排反应,构建四邻位取代的二苯甲酮核心基序,其中螺缩酮内酯在自发过程中形成。所阐述的策略为芒柄菌素和环芒柄菌素的各种新类似物开辟了途径,并可能在未来用于天然产物的全合成。