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首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Synthesis, chemical characterization, computational studies and biological activity of new DNA methyltransferases (DNMTs) specific inhibitor. Epigenetic regulation as a new and potential approach to cancer therapy
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Synthesis, chemical characterization, computational studies and biological activity of new DNA methyltransferases (DNMTs) specific inhibitor. Epigenetic regulation as a new and potential approach to cancer therapy

机译:新型DNA甲基转移酶(DNMT)特异性抑制剂的合成,化学表征,计算研究和生物学活性。表观遗传调控是一种新的潜在的癌症治疗方法

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This work deals with the synthesis, the chemical characterization of dibutyltin(IV) complex of caffeic acid (Bu2Sn(IV)HCAF, caf1) and its cytotoxic action on tumor cells. The coordination environment at the tin center was investigated by FTIR, Sn-119{H-1} cross polarization magic angle spinning, electrospray ionization mass spectroscopy in the solid state and UV-vis, fluorescence and H-1, C-13 and Sn-119 NMR spectroscopy in solution phases. Density functional theory study confirmed the proposed structures in solution phase and indicated the most probably stable conformation. The effects on viability of breast cancer MDA-MB231, colorectal cancer HCT116, hepatocellular carcinoma HepG2 and Chang liver cells, an immortalized non-tumor hepatic cell line, have been investigated. The effect of a variation in structure of caf1 was found to lead to a change in the respective antiproliferative properties: caf1 induces loss of viability in HCT116, MDA-MB-231, and HepG2; the complex shows only moderate effects in non-tumor Chang liver cells. caf1 exerts lower cytotoxic activity than Bu2SnCl2, suggesting that the binding with H(3)CAF modulates the marked cytotoxic activity exerted by Bu2SnCl2; caf1 displays a considerably more pronounced antitumoural effect towards cell lines than caffeic acid. It is known that caffeic acid can modulate DNA (cytosine-5)-methyltransferases 1 (DNMT1) mediated DNA methylation. In this paper we demonstrate that caf1 treatment was able to induce a time-dependent reduction of global DNA methylated status. This effect was also confirmed by a concomitant reduction DNMT1 expression level. The effect induced by caf1 was more evident not only with respect to untreated cells but also compared to H(3)CAF treated cells. (C) 2015 Elsevier Inc. All rights reserved.
机译:这项工作涉及咖啡酸二丁基锡(IV)配合物(Bu2Sn(IV)HCAF,caf1)的合成,化学表征及其对肿瘤细胞的细胞毒性作用。通过FTIR,Sn-119 {H-1}交叉极化幻角旋转,固态电喷雾电离质谱和紫外可见光谱,荧光以及H-1,C-13和Sn对锡中心的配位环境进行了研究。液相中的-119 NMR光谱。密度泛函理论研究证实了所提出的结构处于溶液相,并指出了最可能的稳定构象。已经研究了对乳腺癌MDA-MB231,结直肠癌HCT116,肝细胞癌HepG2和Chang肝细胞(一种永生化的非肿瘤肝细胞系)的生存能力的影响。发现caf1结构变化的结果导致相应的抗增殖特性发生变化:caf1诱导HCT116,MDA-MB-231和HepG2丧失活力;该复合物在非肿瘤性昌肝细胞中仅显示中度作用。 caf1发挥比Bu2SnCl2更低的细胞毒活性,表明与H(3)CAF的结合调节了Bu2SnCl2发挥的显着细胞毒活性。与咖啡酸相比,caf1对细胞系的抗肿瘤作用更为明显。众所周知,咖啡酸可以调节DNA(胞嘧啶5)-甲基转移酶1(DNMT1)介导的DNA甲基化。在本文中,我们证明caf1处理能够诱导时间依赖性地减少总体DNA甲基化状态。 DNMT1表达水平的降低也证实了这一作用。 caf1诱导的作用不仅对于未处理的细胞更为明显,而且与H(3)CAF处理的细胞相比也更为明显。 (C)2015 Elsevier Inc.保留所有权利。

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