Polyacetylenes from Oplopanax horridus and Panax ginseng: Relationship between Structure and PPARγ Activation

细胞毒性 立体化学 化学 人参 生物信息学 过氧化物酶体增殖物激活受体 转录因子 结构-活动关系 生物化学 受体 体外 基因 医学 病理 替代医学
作者
Mirta Rešetar,Xin Liu,Sonja Herdlinger,Olaf Kunert,Eva‐Maria Pferschy‐Wenzig,Simone Latkolik,Theresa Steinacher,Daniela Schuster,Rudolf Bauer,Verena M. Dirsch
出处
期刊:Journal of Natural Products [American Chemical Society]
卷期号:83 (4): 918-926 被引量:27
标识
DOI:10.1021/acs.jnatprod.9b00691
摘要

Abstract Oplopanax horridus and Panax ginseng are members of the plant family Araliaceae, which is rich in structurally diverse polyacetylenes. In this work, we isolated and determined structures of 23 aliphatic C17 and C18 polyacetylenes, of which five are new compounds. Polyacetylenes have a suitable scaffold for binding to PPARγ, a ligand-activated transcription factor involved in metabolic regulation. Using a reporter gene assay, their potential was investigated to activate PPARγ. The majority of the polyacetylenes showed at least some PPARγ activity, among which oplopantriol B 18-acetate (1) and oplopantriol B (2) were the most potent partial PPARγ activators. By employing in silico molecular docking and comparing the activities of structural analogues, features are described that are involved in PPARγ activation, as well as in cytotoxicity. It was found that the type of C-1 to C-2 bond, the polarity of the terminal alkyl chain, and the backbone flexibility can impact bioactivity of polyacetylenes, while diol structures with a C-1 to C-2 double bond showed enhanced cytotoxicity. Since PPARγ activators have antidiabetic and anti-inflammatory properties, the present results may help explain some of the beneficial effects observed in the traditional use of O. horridus extracts. Additionally, they might guide the polyacetylene-based design of future PPARγ partial agonists.

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