Inadera Hidekuni, Tachibana Shinjiro, Takasaki Ichiro, Tabuchi Yoshiaki, Matsushima Kouji, Uchida Mitsuo, Shimomura Akiko
Department of Public Health, Faculty of Medicine, University of Toyama, Toyama, Japan.
Toxicol Lett. 2008 Feb 28;177(1):20-30. doi: 10.1016/j.toxlet.2007.12.004. Epub 2007 Dec 23.
Gene expression analysis using customized or focused DNA microarrays is favorable because of a reduction in the cost and time needed for the analysis. To examine the effect of chemicals on the liver, we developed an in-house cDNA microarray system, mouse Liver Stress Array ver. 1.0, containing 355 unique genes involved in drug metabolism, inflammation and liver-related proteins. These genes were selected for sensing the homeostasis of the liver and based on the information of liver transcriptome revealed by serial analysis of gene expression. By using this customized microarray, we analyzed gene expression changes in the mouse liver treated by 11 known hepatotoxicants. Gene expression measurements corresponding to the in vivo response to known hepatotoxicants revealed that profiles of chemicals with similar mechanisms clustered together. For each of the chemicals tested, several genes that were induced or repressed were common in each chemical exposure, whereas other genes were unique for the specific class compound. Ingenuity pathways analysis revealed that significant alterations in gene expression occurred in a number of biological networks by these treatments. Although the genes spotted on our array was limited to a highly focused set for toxicity classification, this work provides proof of concept that patterns of gene regulation assessed by a focused array system are useful to classify unknown chemicals.
使用定制的或聚焦的DNA微阵列进行基因表达分析是有利的,因为分析所需的成本和时间有所减少。为了研究化学物质对肝脏的影响,我们开发了一种内部cDNA微阵列系统,即小鼠肝脏应激阵列1.0版,其中包含355个参与药物代谢、炎症和肝脏相关蛋白质的独特基因。这些基因是为了检测肝脏的内稳态而选择的,并基于基因表达序列分析所揭示的肝脏转录组信息。通过使用这种定制的微阵列,我们分析了11种已知肝毒性物质处理的小鼠肝脏中的基因表达变化。与对已知肝毒性物质的体内反应相对应的基因表达测量结果表明,具有相似机制的化学物质的图谱聚集在一起。对于每种测试的化学物质,在每次化学物质暴露中,一些被诱导或抑制的基因是常见的,而其他基因则是特定类化合物所特有的。 Ingenuity通路分析表明,这些处理在许多生物网络中引起了基因表达的显著改变。尽管我们阵列上点样的基因仅限于用于毒性分类的高度聚焦的一组,但这项工作提供了概念证明,即通过聚焦阵列系统评估的基因调控模式对于未知化学物质的分类是有用的。