Department of Chemistry and Center for Integrated Protein Science, Ludwig Maximilians University Munich, Butenandtstraße 5-13, Munich 81377, Germany.
Nat Chem. 2015 Nov;7(11):879-82. doi: 10.1038/nchem.2336. Epub 2015 Sep 7.
Epicolactone is a recently isolated fungal metabolite that is highly complex for its size, and yet racemic. With its array of quaternary stereocentres, high degree of functionalization and intricate polycyclic structure, it poses a considerable challenge to synthesis, a challenge that can be met by understanding its biosynthetic origin. If drawn in a certain way, epicolactone reveals a pattern that resembles purpurogallin, the archetype of ubiquitous natural colourants formed via oxidative dimerization. Based on this insight, we designed a biomimetic synthesis of epicolactone that proceeds in only eight steps from vanillyl alcohol. We have isolated a key intermediate that supports our biosynthetic hypothesis and anticipate that an isomer of epicolactone stemming from our synthetic efforts could also be found as a natural product.
表柯内酯是一种最近分离得到的真菌代谢产物,其分子量巨大且为外消旋体,结构非常复杂。由于其具有一系列的季立体中心、高度官能化和复杂的多环结构,因此对其合成构成了相当大的挑战,而对其生物合成起源的理解可以帮助我们应对这一挑战。如果以某种方式绘制,表柯内酯显示出一种与紫尿酸的相似模式,紫尿酸是通过氧化二聚化形成的无处不在的天然色素的原型。基于这一见解,我们设计了一种从香草醇出发的仅需 8 步即可完成的表柯内酯的仿生合成。我们已经分离到一个关键的中间体,该中间体支持我们的生物合成假设,并预计我们的合成努力所产生的表柯内酯的一种异构体也可能作为天然产物被发现。