Jiménez-Romero Carlos, Rode Joanna E, Rodríguez Abimael D
Molecular Sciences Research Center, University of Puerto Rico, 1390 Ponce de León Avenue, San Juan, Puerto Rico 00926.
Institute of Organic Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.
Tetrahedron Asymmetry. 2016 Jun;27(9-10):410-419. doi: 10.1016/j.tetasy.2016.03.011. Epub 2016 Apr 7.
Recent work by Wu et al. in connection with the first synthesis of the marine natural product plakinidone revealed that the most salient feature of its purported structure, a six-membered perlactone moiety, was in fact a five-membered lactone, i.e. a 3-methyl-4-hydroxy-2(5H)-furanone or tetronic acid ring. With the planar structure of plakinidone confidently revised, we undertook a new investigation to unambiguously establish its absolute configuration. Upon preparing two stable derivatives and from a sample of naturally occurring plakinidone extracted from the sponge association , the absolute configuration was assigned by synthesis and vibrational and electronic circular dichroism (VCD and ECD) measurements in combination with density functional theory calculations at the B3LYP/aug-cc-pVDZ/PCM(CHCN) level of theory. Our combined efforts and the agreement between the experimental and calculated VCD/ECD spectra of revealed that the absolute configuration of plakinidone was in fact (11,17) and not the formerly reported (11,17) diastereomer assigned by Wu et al.. Therefore, we propose that natural plakinidone is accurately represented by structure .
吴等人最近关于海洋天然产物普拉基尼酮首次合成的研究表明,其所谓结构中最显著的特征——一个六元过内酯部分,实际上是一个五元内酯,即3-甲基-4-羟基-2(5H)-呋喃酮或特窗酸环。随着普拉基尼酮平面结构的确切修正,我们展开了一项新的研究,以明确确定其绝对构型。从海绵共生体中提取的天然普拉基尼酮样品制备了两种稳定的衍生物和后,通过合成以及在B3LYP/aug-cc-pVDZ/PCM(CHCN)理论水平下结合密度泛函理论计算的振动和电子圆二色性(VCD和ECD)测量来确定绝对构型。我们的共同努力以及衍生物的实验和计算VCD/ECD光谱之间的一致性表明,普拉基尼酮的绝对构型实际上是(11,17),而不是吴等人先前报道的(11,17)非对映异构体。因此,我们提出天然普拉基尼酮由结构准确表示。