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首页> 外文期刊>Archives of Toxicology >Synthetic cajanin stilbene acid derivatives inhibit c-MYC in breast cancer cells
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Synthetic cajanin stilbene acid derivatives inhibit c-MYC in breast cancer cells

机译:合成的Cajanin芪酸衍生物在乳腺癌细胞中抑制c-myc

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In the present study, we investigated the activity and modes of action of cajanin stilbene acid (CSA) and its derivatives in terms of cytotoxicity, gene expression profile, and transcription factor activity. XTT assays on MCF7 cells were performed upon treatment with CSA or derivatives. After the determination of IC50 values, gene expression profiling was performed with Agilent microarray experiments. Deregulated genes were determined with Chipster software, pathway and functional analyses were performed with Ingenuity pathway software. In order to identify the potential upstream regulators, MatInspector software was used to perform transcription factor binding motif search in the promoter regions of the deregulated genes. Molecular docking on MYC/MAX complex and reporter cell line experiments were performed to validate the MYC inhibitory activity of CSA and its derivatives. Two known MYC inhibitors: 10058-F4 and 10074-G5 were used as positive control. All compounds showed cytotoxicities in the micromolar range. Microarray analyses pointed to cell cycle, DNA damage, and DNA repair as mainly affected cellular functions. Promoter motif analysis of the deregulated genes further supported the microarray gene expression analysis results emphasizing the relevance of transcription factors regulating cell cycle and proliferation, with MYC as being the most pronounced one. Luciferase-based reporter cell line experiments and molecular docking studies yielded supportive results emphasizing the inhibitory activity of CSA and its derivatives on MYC. CSA and its derivatives are shown to be promising anticancer compounds with low toxicity. They inhibit MYC activity comparable to 10058-F4 and 10074-G5. Further studies are warranted to analyze the therapeutic applicability of these compounds in more detail.
机译:在本研究中,我们研究了Cajanin stilbene酸(CSA)及其衍生物在细胞毒性,基因表达谱和转录因子活性方面的活性和作用方式。在用CSA或衍生物处理后进行MCF7细胞的XTT测定。在测定IC 50值后,用安蛋白微阵列实验进行基因表达分析。用钙软件测定探测基因,用聪明途径软件进行途径和功能分析。为了识别潜在的上游调节因子,Matinspector软件用于在令人讨进的基因的启动子区域进行转录因子结合基序搜索。进行Myc / Max复合物和报告细胞系实验的分子对接以验证CSA及其衍生物的Myc抑制活性。两种已知的Myc抑制剂:10058-F4和10074-G5用作阳性对照。所有化合物在微摩尔范围内显示出细胞毒性。微阵列分析指向细胞周期,DNA损伤和DNA修复,主要影响细胞功能。促进基因的启动子主题分析进一步支持微阵列基因表达分析结果强调转录因子调节细胞周期和增殖的相关性,Myc是最明显的。基于荧光素酶的报告细胞系实验和分子对接研究产生了支持性的结果,并强调CSA及其衍生物对MYC的抑制活性。 CSA及其衍生物被证明是具有低毒性的抗癌化合物。它们抑制了与10058-F4和10074-G5相当的Myc活性。有必要进一步研究以更详细地分析这些化合物的治疗性适用性。

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