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ชื่อเรื่อง: | Biotransformation of β-Mangostin by an Endophytic Fungus of Garcinia mangostana to Furnish Xanthenes with an Unprecedented Heterocyclic Skeleton |
ผู้แต่ง: | Arunrattiyakorn P. Kuno M. Aree T. Laphookhieo S. Sriyatep T. Kanzaki H. Garcia Chavez M.A. Wang Y.A. Andersen R.J. |
Keywords: | beta mangostin herbaceous agent mangostafeejin A mangostafeejin B natural product unclassified drug xanthene derivative heterocyclic carboxylic acid mangostin xanthene derivative xanthone derivative Article biotransformation carbon nuclear magnetic resonance comparative study diastereoisomer drug isolation drug structure enantiomer endophytic fungus Garcinia mangostana high performance liquid chromatography hydrogen bond nonhuman reversed phase high performance liquid chromatography X ray diffraction Xylaria feejeensis biotransformation chemical structure circular dichroism Garcinia mangostana mass spectrometry metabolism microbiology nuclear magnetic resonance spectroscopy stereoisomerism synthesis Xylariales Acids, Heterocyclic Biotransformation Circular Dichroism Garcinia mangostana Magnetic Resonance Spectroscopy Mass Spectrometry Molecular Structure Stereoisomerism X-Ray Diffraction Xanthenes Xanthones Xylariales |
วันที่เผยแพร่: | 2018 |
บทคัดย่อ: | Biotransformation of β-mangostin (1) by the endophytic fungus Xylaria feejeensis GM06 afforded hexacyclic ring-fused xanthenes with an unprecedented hexacyclic heterocylic skeleton. β-Mangostin (1) was transformed to two diastereomeric pairs of enantiomers, mangostafeejin A [(-)-2a/(+)-2b)] and mangostafeejin B [(-)-3a/(+)-3b)]. The chemical structures of the transformation products were elucidated by analysis of NMR and MS data, and the structure of mangostafeejin A [(-)-2a/(+)-2b)] was confirmed by single-crystal X-ray diffraction analysis. The absolute configurations of 3a and 3b were established on the basis of calculated and measured ECD data using the ECD spectra of 2a and 2b as models. The fungal biotransformation described herein provides an effective method to convert an abundant achiral plant natural product scaffold into new chiral heterocyclic scaffolds representing expanded chemical diversity for biological activity screening. © 2018 American Chemical Society and American Society of Pharmacognosy. |
URI: | https://ir.swu.ac.th/jspui/handle/123456789/12728 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85055189576&doi=10.1021%2facs.jnatprod.8b00519&partnerID=40&md5=ffa8ee20c6805a758cd3f21cf8f05784 |
ISSN: | 1633864 |
Appears in Collections: | Scopus 1983-2021 |
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