Semizarov Dimitri, Kroeger Paul, Fesik Stephen
Global Pharmaceutical Research and Development, Abbott Laboratories, 100 Abbott Park Road, Abbott Park, IL 60064, USA.
Nucleic Acids Res. 2004 Jul 22;32(13):3836-45. doi: 10.1093/nar/gkh714. Print 2004.
The task of specific gene knockdown in vitro has been facilitated through the use of short interfering RNA (siRNA), which is now widely used for studying gene function, as well as for identifying and validating new drug targets. We explored the possibility of using siRNA for dissecting cellular pathways by siRNA-mediated gene silencing followed by gene expression profiling and systematic pathway analysis. We used siRNA to eliminate the Rb1 gene in human cells and determined the effects of Rb1 knockdown on the cell by using microarray-based gene expression profiling coupled with quantitative pathway analysis using the GenMapp and MappFinder software. Retinoblastoma protein is one of the key cell cycle regulators, which exerts its function through its interactions with E2F transcription factors. Rb1 knockdown affected G1/S and G2/M transitions of the cell cycle, DNA replication and repair, mitosis, and apoptosis, indicating that siRNA-mediated transient elimination of Rb1 mimics the control of cell cycle through Rb1 dissociation from E2F. Additionally, we observed significant effects on the processes of DNA damage response and epigenetic regulation of gene expression. Analysis of transcription factor binding sites was utilized to distinguish between putative direct targets and genes induced through other mechanisms. Our approach, which combines the use of siRNA-mediated gene silencing, mediated microarray screening and quantitative pathway analysis, can be used in functional genomics to elucidate the role of the target gene in intracellular pathways. The approach also holds significant promise for compound selection in drug discovery.
通过使用小干扰RNA(siRNA),体外特异性基因敲低的任务变得更加容易,siRNA现在广泛用于研究基因功能,以及识别和验证新的药物靶点。我们探索了通过siRNA介导的基因沉默,随后进行基因表达谱分析和系统的通路分析,来利用siRNA剖析细胞通路的可能性。我们使用siRNA消除人类细胞中的Rb1基因,并通过基于微阵列的基因表达谱分析,结合使用GenMapp和MappFinder软件进行定量通路分析,来确定Rb1敲低对细胞的影响。视网膜母细胞瘤蛋白是关键的细胞周期调节因子之一,它通过与E2F转录因子相互作用发挥其功能。Rb1敲低影响了细胞周期的G1/S和G2/M转换、DNA复制和修复、有丝分裂以及细胞凋亡,这表明siRNA介导的Rb1瞬时消除模拟了通过Rb1与E2F解离对细胞周期的控制。此外,我们观察到对DNA损伤反应和基因表达的表观遗传调控过程有显著影响。利用转录因子结合位点分析来区分推定的直接靶点和通过其他机制诱导的基因。我们的方法结合了siRNA介导的基因沉默、微阵列筛选和定量通路分析,可用于功能基因组学,以阐明靶基因在细胞内通路中的作用。该方法在药物发现中的化合物选择方面也具有重要前景。