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计算机模拟和生化分析鉴定醌还原酶 2 为白藜芦醇的靶标。

In silico and biochemical analyses identify quinone reductase 2 as a target of piceatannol.

机构信息

Research Associate Professor, Room 133, Department of Biochemistry and Molecular Biology, New York Medical College, Valhalla, NY 10595, USA.

出版信息

Curr Med Chem. 2013;20(33):4195-202. doi: 10.2174/09298673113209990252.

Abstract

To obtain information on anti-prostate cancer (CaP) activities of piceatannol, a metabolite biotransformed from resveratrol by cytochrome P450 CYP1B, CWR22Rv1 cells were incubated with increasing dose of piceatannol. Proliferation and apoptosis assays in exposed cells showed that piceatannol produced inhibition comparable to resveratrol. To determine whether quinone reductase 2 (NQO2) plays a role in the observed effects, in silico analysis was performed. Piceatannol interacted with NQO2 at the same site as resveratrol forming hydrogen bond with asparagine-161 (ASN161). NQO2 mediated anti-CaP effects of piceatannol were also tested and supported by the attenuation of anti-proliferative activity and reduction in extent of inhibition of NQO2 activity by piceatannol in NQO2-knockdown cells relative to NQO2- expressing cells, and by the copious expression of CYP1B in CWR22Rv1 cells. These results show that NQO2 is an intracellular target for piceatannol, suggesting that CaP prevention by resveratrol may be partially attributed to its conversion to piceatannol.

摘要

为了获取关于白藜芦醇代谢产物白皮素(由细胞色素 P450 CYP1B 生物转化而来)抗前列腺癌(CaP)活性的信息,用不同浓度的白皮素孵育 CWR22Rv1 细胞。暴露于白皮素的细胞中的增殖和凋亡检测表明,白皮素产生的抑制作用与白藜芦醇相当。为了确定醌还原酶 2(NQO2)是否在观察到的效应中起作用,进行了计算机模拟分析。白皮素与 NQO2 在与白藜芦醇相同的位置相互作用,与天冬酰胺-161(ASN161)形成氢键。还测试了 NQO2 介导的白皮素抗 CaP 作用,并得到以下结果的支持:与表达 NQO2 的细胞相比,NQO2 敲低细胞中白皮素对增殖活性的抑制作用减弱,以及 NQO2 活性的抑制程度降低,并且 CWR22Rv1 细胞中 CYP1B 大量表达。这些结果表明 NQO2 是白皮素的细胞内靶标,表明白藜芦醇对 CaP 的预防作用可能部分归因于其转化为白皮素。

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