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Anti-Dengue Virus Constituents from Formosan Zoanthid Palythoa mutuki.


ABSTRACT: A new marine ecdysteroid with an ?-hydroxy group attaching at C-4 instead of attaching at C-2 and C-3, named palythone A (1), together with eight known compounds (2-9) were obtained from the ethanolic extract of the Formosan zoanthid Palythoa mutuki. The structures of those compounds were mainly determined by NMR spectroscopic data analyses. The absolute configuration of 1 was further confirmed by comparing experimental and calculated circular dichroism (CD) spectra. Anti-dengue virus 2 activity and cytotoxicity of five isolated compounds were evaluated using virus infectious system and [3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium, inner salt (MTS) assays, respectively. As a result, peridinin (9) exhibited strong antiviral activity (IC50 = 4.50 ± 0.46 ?g/mL), which is better than that of the positive control, 2'CMC. It is the first carotene-like substance possessing anti-dengue virus activity. In addition, the structural diversity and bioactivity of the isolates were compared by using a ChemGPS-NP computational analysis. The ChemGPS-NP data suggested natural products with anti-dengue virus activity locate closely in the chemical space.

SUBMITTER: Lee JC 

PROVIDER: S-EPMC4999912 | biostudies-literature | 2016 Aug

REPOSITORIES: biostudies-literature

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Anti-Dengue Virus Constituents from Formosan Zoanthid Palythoa mutuki.

Lee Jin-Ching JC   Chang Fang-Rong FR   Chen Shu-Rong SR   Wu Yu-Hsuan YH   Hu Hao-Chun HC   Wu Yang-Chang YC   Backlund Anders A   Cheng Yuan-Bin YB  

Marine drugs 20160809 8


A new marine ecdysteroid with an α-hydroxy group attaching at C-4 instead of attaching at C-2 and C-3, named palythone A (1), together with eight known compounds (2-9) were obtained from the ethanolic extract of the Formosan zoanthid Palythoa mutuki. The structures of those compounds were mainly determined by NMR spectroscopic data analyses. The absolute configuration of 1 was further confirmed by comparing experimental and calculated circular dichroism (CD) spectra. Anti-dengue virus 2 activity  ...[more]

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