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Analyzing Gene Expression Profile in K562 Cells Exposed to Sodium Valproate Using Microarray Combined with the Connectivity Map Database

机译:结合连接图数据库分析微阵列分析丙戊酸钠暴露于K562细胞中的基因表达谱

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摘要

To explore the mechanism underlying antileukaemia effect of sodium valproate, the growth and survival of the K562 cell line were investigated. Global profiles of gene expression in K562 cells exposed to sodium valproate were assessed and validated. The differentially expressed genes identified were further used to query the connectivity map database to retrieve a ranked list of compounds that act on the same intracellular targets as sodium valproate. A significant increase in cell apoptosis and a change in gene expression profile were observed in valproate-exposed K562 cells. The significant enrichment analysis of gene ontology terms for the differentially expressed genes showed that these genes were involved in many important biological processes. Eight differentially expressed genes involved in apoptosis were verified by quantitative real-time PCR. The connectivity map analysis showed gene expression profile in K562 cells exposed to sodium valproate was most similar to that of HDACi and PI3K inhibitors, suggesting that sodium valproate might exert antileukaemic action by inhibiting HDAC as well as inhibiting PI3K pathway. In conclusion, our data might provide clues to elucidate the molecular and therapeutic potential of VPA in leukaemia treatment, and the connectivity map is a useful tool for exploring the molecular mechanism of drug action.
机译:为了探索丙戊酸钠抗白血病作用的机制,研究了K562细胞系的生长和存活。评估和验证了暴露于丙戊酸钠的K562细胞中基因表达的总体表达。鉴定出的差异表达基因还用于查询连通性图数据库,以检索与丙戊酸钠作用于相同细胞内靶标的化合物的排序列表。在丙戊酸暴露的K562细胞中观察到细胞凋亡的显着增加和基因表达谱的变化。对差异表达基因的基因本体术语的显着富集分析表明,这些基因参与了许多重要的生物学过程。通过定量实时PCR验证了八个参与凋亡的差异表达基因。连通图分析显示,暴露于丙戊酸钠的K562细胞中的基因表达谱与HDACi和PI3K抑制剂最相似,这表明丙戊酸钠可能通过抑制HDAC和抑制PI3K途径发挥抗白血病作用。总之,我们的数据可能为阐明VPA在白血病治疗中的分子和治疗潜力提供线索,并且连接图是探索药物作用分子机制的有用工具。

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