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倍半萜内酯小白菊内酯对DNA甲基化的调节作用。

Modulation of DNA methylation by a sesquiterpene lactone parthenolide.

作者信息

Liu Zhongfa, Liu Shujun, Xie Zhiliang, Pavlovicz Ryan E, Wu Jiejun, Chen Ping, Aimiuwu Josephine, Pang Jiuxia, Bhasin Deepak, Neviani Paolo, Fuchs James R, Plass Christoph, Li Pui-Kai, Li Chenglong, Huang Tim H-M, Wu Lai-Chu, Rush Laura, Wang Hongyan, Perrotti Danilo, Marcucci Guido, Chan Kenneth K

机构信息

Division of Pharmaceutics, Colleges of Pharmacy, The Ohio State University, Columbus, OH 43210, USA.

出版信息

J Pharmacol Exp Ther. 2009 May;329(2):505-14. doi: 10.1124/jpet.108.147934. Epub 2009 Feb 6.

Abstract

Hypermethylation of 5'-cytosine-guanosine islands of tumor suppressor genes resulting in their silencing has been proposed to be a hallmark of various tumors. Modulation of DNA methylation with DNA methylation inhibitors has been shown to result in cancer cell differentiation or apoptosis and represents a novel strategy for chemotherapy. Currently, effective DNA methylation inhibitors are mainly limited to decitabine and 5-azacytidine, which still show unfavorable toxicity profiles in the clinical setting. Thus, discovery and development of novel hypomethylating agents, with a more favorable toxicity profile, is essential to broaden the spectrum of epigenetic therapy. Parthenolide, the principal bioactive sesquiterpene lactone of feverfew, has been shown to alkylate Cys(38) of p65 to inhibit nuclear factor-kappaB activation and exhibit anti-tumor activity in human malignancies. In this article, we report that parthenolide 1) inhibits DNA methyltransferase 1 (DNMT1) with an IC(50) of 3.5 microM, possibly through alkylation of the proximal thiolate of Cys(1226) of the catalytic domain by its gamma-methylene lactone, and 2) down-regulates DNMT1 expression possibly associated with its SubG(1) cell-cycle arrest or the interruption of transcriptional factor Sp1 binding to the promoter of DNMT1. These dual functions of parthenolide result in the observed in vitro and in vivo global DNA hypomethylation. Furthermore, parthenolide has been shown to reactivate tumor suppressor HIN-1 gene in vitro possibly associated with its promoter hypomethylation. Hence, our study established parthenolide as an effective DNA methylation inhibitor, representing a novel prototype for DNMT1 inhibitor discovery and development from natural structural-diversified sesquiterpene lactones.

摘要

肿瘤抑制基因5'-胞嘧啶-鸟嘌呤岛的高甲基化导致其沉默,这被认为是各种肿瘤的一个标志。用DNA甲基化抑制剂调节DNA甲基化已被证明可导致癌细胞分化或凋亡,代表了一种新的化疗策略。目前,有效的DNA甲基化抑制剂主要限于地西他滨和5-氮杂胞苷,它们在临床环境中仍显示出不良的毒性特征。因此,发现和开发具有更有利毒性特征的新型低甲基化剂对于拓宽表观遗传治疗的范围至关重要。小白菊内酯是小白菊的主要生物活性倍半萜内酯,已被证明可使p65的Cys(38)烷基化以抑制核因子-κB活化,并在人类恶性肿瘤中表现出抗肿瘤活性。在本文中,我们报告小白菊内酯1)以3.5 microM的IC(50)抑制DNA甲基转移酶1(DNMT1),可能是通过其γ-亚甲基内酯使催化结构域的Cys(1226)的近端硫醇盐烷基化,以及2)下调DNMT1表达,这可能与其SubG(1)细胞周期停滞或转录因子Sp1与DNMT1启动子的结合中断有关。小白菊内酯的这些双重功能导致了在体外和体内观察到的整体DNA低甲基化。此外,小白菊内酯已被证明在体外可使肿瘤抑制基因HIN-1重新激活,这可能与其启动子低甲基化有关。因此,我们的研究确立了小白菊内酯作为一种有效的DNA甲基化抑制剂,代表了从天然结构多样的倍半萜内酯中发现和开发DNMT1抑制剂的新型原型。

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Modulation of DNA methylation by a sesquiterpene lactone parthenolide.倍半萜内酯小白菊内酯对DNA甲基化的调节作用。
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