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Thymoquinone regulates gene expression levels in the estrogen metabolic and interferon pathways in MCF7 breast cancer cells

机译:胸腺醌调节MCF7乳腺癌细胞雌激素代谢和干扰素途径中的基因表达水平

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摘要

New drugs are continuously being developed for the treatment of patients with estrogen receptor-positive breast cancer. Thymoquinone is one of the drugs that exhibits anticancer characteristics based on in vivo and in vitro models. This study further investigates the effects of thymoquinone on human gene expression using cDNA microarray technology. The quantification of RNA samples was carried out using an Agilent 2100 Bioanalyser to determine the RNA integrity number (RIN). The Agilent Low Input Quick Amplification Labelling kit was used to generate cRNA in two-color microarray analysis. Samples with RIN >9.0 were used in this study. The universal human reference RNA was used as the common reference. The samples were labelled with cyanine-3 (cye-3) CTP dye and the universal human reference was labelled with cyanine-5 (cye-5) CTP dye. cRNA was purified with the RNeasy Plus Mini kit and quantified using a NanoDrop 2000c spectrophotometer. The arrays were scanned data analysed using Feature Extraction and GeneSpring software. Two-step qRT-PCR was selected to determine the relative gene expression using the High Capacity RNA-to-cDNA kit. The results from Gene Ontology (GO) analysis, indicated that 8 GO terms were related to biological processes (84%) and molecular functions (16%). A total of 577 entities showed >2-fold change in expression. Of these entities, 45.2% showed an upregulation and 54.7% showed a downregulation in expression. The interpretation of single experiment analysis (SEA) revealed that the cytochrome P450, family 1, subfamily A, polypeptide 1 (CYP1A1) and UDP glucuronosyltransferase 1 family, polypeptide A8 (UGT1A8) genes in the estrogen metabolic pathway were downregulated significantly by 43- and 11-fold, respectively. The solute carrier family 7 (anionic amino acid transporter light chain, xc-system), member 11 (SLC7A11) gene in the interferon pathway, reported to be involved in the development of chemoresistance, was downregulated by 15-fold. The interferon-induced protein with tetratricopeptide repeats (IFIT)1, IFIT2, IFIT3, interferon, α-inducible protein (IFI)6 (also known as G1P3), interferon regulatory factor 9 (IRF9, ISGF3), 2′–5′-oligoadenylate synthetase 1, 40/46 kDa (OAS1) and signal transducer and activator of transcription 1 (STAT1) genes all showed changes in expression following treatment with thymoquinone. The caspase 10, apoptosis-related cysteine peptidase (CASP10) gene was activated and the protein tyrosine phosphatase, receptor type, R (PTPRR) and myocyte enhancer factor 2C (MEF2C) genes were upregulated in the classical MAPK and p38 MAPK pathways. These findings indicate that thymquinone targets specific genes in the estrogen metabolic and interferon pathways.
机译:不断开发新的药物来治疗雌激素受体阳性的乳腺癌患者。胸腺醌是基于体内和体外模型显示出抗癌特性的药物之一。这项研究使用cDNA微阵列技术进一步研究了胸腺醌对人类基因表达的影响。使用Agilent 2100生物分析仪对RNA样品进行定量,以确定RNA完整性数(RIN)。安捷伦低输入快速扩增标记试剂盒用于在双色微阵列分析中生成cRNA。在本研究中使用RIN> 9.0的样品。通用人类参考RNA被用作通用参考。样品用花菁3(cye-3)CTP染料标记,通用参考样品用花菁5(cye-5)CTP染料标记。 cRNA用RNeasy Plus Mini试剂盒纯化,并使用NanoDrop 2000c分光光度计定量。使用特征提取和GeneSpring软件对阵列进行扫描数据分析。使用High Capacity RNA转cDNA试剂盒,选择两步qRT-PCR确定相对基因表达。基因本体论(GO)分析的结果表明,有8个GO术语与生物学过程(84%)和分子功能(16%)有关。共有577个实体显示了> 2倍的表达变化。在这些实体中,有45.2%的表达上调,有54.7%的表达下调。单一实验分析(SEA)的解释显示,雌激素代谢途径中的细胞色素P450家族1,亚家族A,多肽1(CYP1A1)和UDP葡萄糖醛糖基转移酶1家族,多肽A8(UGT1A8)基因被43-和显着下调。 11倍。干扰素途径中的溶质载体家族7(阴离子氨基酸转运蛋白轻链,xc系统),成员11(SLC7A11)基因据报道参与化学抗性的形成,下调了15倍。干扰素诱导的四肽重复蛋白(IFIT)1,IFIT2,IFIT3,干扰素,α诱导蛋白(IFI)6(也称为G1P3),干扰素调节因子9(IRF9,ISGF3),2'–5'-寡腺苷酸合成酶1、40 / 46 kDa(OAS1)和信号转导和转录激活因子1(STAT1)基因在用胸腺醌处理后均显示出表达变化。在经典MAPK中激活了与凋亡相关的半胱氨酸肽酶(CASP10)基因caspase 10,并且酪氨酸磷酸酶,受体类型,R(PTPRR)和肌细胞增强因子2C( MEF2C )基因被上调。和p38 MAPK途径。这些发现表明,胸腺醌靶向雌激素代谢和干扰素途径中的特定基因。

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