| Literature DB >> 28584912 |
Wenni He1,2, Yao Li1,3, Yuejie Qin1, Xiaomei Tong1, Zhijun Song1,3, Yu Zhao1,3, Ran Wei1, Li Li4, Huanqin Dai1, Wenzhao Wang5, Houwei Luo6, Xin Ye1, Lixin Zhang7,8, Xueting Liu9.
Abstract
This paper provides an efficient platform to diversify the structure and pharmaceutical potentials of known natural products. Seven metabolites were obtained via the biotransformation of cryptotanshinone by the fungus Mucor rouxii AS 3.3447, and assigned as 13R-14R-hydroxy-anhydride of 16R-cryptotanshinone (1), 1S-hydroxy-anhydride of 16R-cryptotanshinone (2), 1R-hydroxy-anhydride of 16R-cryptotanshinone (3), 3S-hydroxy-epicryptoacetalide (4), 3S-hydroxy-cryptoacetalide (5), epicryptoacetalide (6), and cryptoacetalide (7). Among these compounds, 1-5 are novel. The ortho-naphthoquinone chromophore of cryptotanshinone was degraded and rearranged by M. rouxii. 1 and 3 showed good anti-influenza A virus activities with the reduced cytotoxic activities compared to the parent substrate cryptotanshinone (8). The structures of all the new compounds were determined on the basis of HRESIMS (high-resolution electrospray ionization mass spectroscopy) spectrometry, NMR (nuclear magnetic resonance) spectroscopy, ECD (electronic circular dichroism) calculations, and the CD (circular dichroism) of "in situ" method with [Rh2(OCOCF3)4].Entities:
Keywords: Anti-influenza A virus activity; Biotransformation; Cryptotanshinone; Mucor rouxii
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Year: 2017 PMID: 28584912 DOI: 10.1007/s00253-017-8351-0
Source DB: PubMed Journal: Appl Microbiol Biotechnol ISSN: 0175-7598 Impact factor: 4.813