Sutour Sylvain, Therrien Bruno, von Reuss Stephan H, Tomi Félix
Université de Corse-CNRS , UMR 6134 SPE, Equipe Chimie et Biomasse, Route des Sanguinaires, 20000 Ajaccio, France.
Neuchâtel Platform of Analytical Chemistry, University of Neuchâtel , Avenue de Bellevaux 51, 2000 Neuchâtel, Switzerland.
J Nat Prod. 2018 Feb 23;81(2):279-285. doi: 10.1021/acs.jnatprod.7b00706. Epub 2018 Jan 30.
NMR chemical profiling of a Laurenciella sp. using a computerized method developed in our laboratory resulted in the identification of five new compounds (1-5) and 17 known compounds, among which 3-(E)-laurenyne represented by far the most abundant metabolite. Compounds 1 to 5 were isolated and fully characterized by detailed spectroscopic analysis. The absolute configuration and structural features of compound 1 were determined by single-crystal X-ray diffraction analysis. Compounds 1 to 4 are 12-membered cyclic ether acetogenins that are present in solution as interconverting conformers exhibiting an (aR) configuration of the bromoallene unit together with an S configuration at C-4. Among these, compound 3 is the first obtusallene derivative with bromine substituents at both the C-7 and C-12 positions. Compound 5 is an acetogenin bearing a [5.5.1]bicyclotridecane ring system. A plausible biosynthetic route to 1-4 is proposed.
使用我们实验室开发的一种计算机化方法对一种劳伦氏菌属(Laurenciella sp.)进行核磁共振化学谱分析,结果鉴定出5种新化合物(1 - 5)和17种已知化合物,其中3-(E)-劳伦炔(3-(E)-laurenyne)是迄今为止含量最丰富的代谢产物。通过详细的光谱分析对化合物1至5进行了分离和全面表征。化合物1的绝对构型和结构特征通过单晶X射线衍射分析确定。化合物1至4是12元环醚产乙酸素,它们在溶液中以相互转化的构象存在,溴代丙二烯单元呈现(aR)构型,且C-4位为S构型。其中,化合物3是首个在C-7和C-12位均带有溴取代基的钝叶烯衍生物。化合物5是一种带有[5.5.1]双环十三烷环系的产乙酸素。本文提出了一条合理的通往1 - 4的生物合成途径。