首页> 外文期刊>The Journal of Organic Chemistry >Structure, absolute configuration, and conformational study of 12-membered macrolides from the fungus dendrodochium sp. associated with the sea cucumber holothuria nobilis selenka
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Structure, absolute configuration, and conformational study of 12-membered macrolides from the fungus dendrodochium sp. associated with the sea cucumber holothuria nobilis selenka

机译:结构,绝对构型和构象研究的真菌树突孢菌属sp的12元大环内酯类。与海参有关的海参

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Dendrodolides A-M (1-13), 13 new 12-membered macrolides, were isolated from Dendrodochium sp., a fungus associated with the sea cucumber Holothuria nobilis Selenka, which was collect0ed from the South China Sea. The structures of the dendrodolides were elucidated by means of detailed spectroscopic analysis and X-ray single-crystal diffraction. The absolute configurations were assigned using the modified Mosher method, exciton-coupled circular dichroism (ECCD), electronic solution and solid-state circular dichroism (ECD) supported by time-dependent density functional theory (TDDFT) ECD calculations, and X-ray analysis. A detailed conformational analysis of the 13 derivatives indicated that the conformation of the flexible macrolide ring plays a decisive role in their chiroptical properties. Thus, it is highly recommended to apply advanced levels of theory and to avoid simple comparison of ECD spectra to determine the absolute configurations of these derivatives. In an in vitro bioassay, compounds 1-5, 7-9, 11, and 12 exhibited different levels of growth inhibitory activity against SMMC-7721 and HCT116 cells. This is the first report of 12-membered macrolides from the fungus of the genus Dendrodochium. The coisolation of four pairs of epimers is extremely interesting and indicates the complexity of β-ketoreductase stereospecificity in the biosynthesis of enigmatic iterative fungal polyketides.
机译:Dendrodolides A-M(1-13)是13种新的12元大环内酯类化合物,是从与南海海参Holothuria nobilis Selenka相关的一种真菌Dendrodochium sp。中分离出来的。通过详细的光谱分析和X射线单晶衍射阐明了树状多核苷酸的结构。绝对构型是使用改进的Mosher方法,激子耦合圆二色性(ECCD),电子解决方案和固态圆二色性(ECD)进行分配的,并依赖于时变密度泛函理论(TDDFT)ECD计算和X射线分析。对13种衍生物的详细构象分析表明,柔性大环内酯环的构象对其手性起决定性作用。因此,强烈建议应用高级理论,并避免简单比较ECD光谱以确定这些衍生物的绝对构型。在体外生物测定中,化合物1-5、7-9、11和12对SMMC-7721和HCT116细胞表现出不同水平的生长抑制活性。这是来自石end属真菌的12元大环内酯类的首次报道。四对差向异构体的共分离非常有趣,表明在神秘的迭代性真菌聚酮化合物的生物合成中,β-酮还原酶立体特异性的复杂性。

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