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Transcriptional profiles of human epithelial cells in response to heat: computational evidence for novel heat shock proteins.

机译:人类上皮细胞的转录概况针对热:计算的证据小说热休克蛋白质。

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摘要

We hypothesized that broad-scale expression profiling would provide insight into the regulatory pathways that control gene expression in response to stress and potentially identify novel heat-responsive genes. HEp2 cells, a human malignant epithelial cell line, were heated at 37 degrees C to 43 degrees C for 60 min to gauge the heat shock response, using as a proxy inducible Hsp70 quantified by Western blot analysis. Based on these results, microarray experiments were conducted at 37 degrees C, 40 degrees C, 41 degrees C, 42 degrees C, and 43 degrees C. Using linear modeling, we compared the sets of microarrays at 40 degrees C, 41 degrees C, 42 degrees C, and 43 degrees C with the 37 degrees C baseline temperature and took the union of the genes exhibiting differential gene expression signal to create two sets of "heat shock response" genes, each set reflecting either increased or decreased RNA abundance. Leveraging human and mouse orthologous alignments, we used the two lists of coexpressed genes to predict transcription factor binding sites in silico, including those for heat shock factor (HSF) 1 and HSF2 transcription factors. We discovered HSF1 and HSF2 binding sites in 15 genes not previously associated with the heat shock response. We conclude that microarray experiments coupled with upstream promoter analysis can be used to identify novel genes that respond to heat shock. Additional experiments are required to validate these putative heat shock proteins and facilitate a deeper understanding of the mechanisms involved during the stress response.
机译:我们假设大规模表达分析将提供洞察监管途径,控制基因的表达为了应对压力和潜在的识别小说热敏基因。恶性上皮细胞系,在37个加热度为60分钟43度来衡量作为一个代理诱导热休克反应,使用Hsp70免疫印迹分析量化。这些结果,微阵列实验在37摄氏度,40摄氏度,41岁摄氏度,42摄氏度,43度使用线性建模,我们比较了套微阵列在40摄氏度,41摄氏度,42度,和43摄氏度37摄氏度基准温度和带的结合基因差异表达基因表现创建两组“热休克的信号反应”基因,每一组反映增加或减少RNA丰富。人类和小鼠同源比对,我们使用coexpressed基因预测的两个列表转录因子结合位点在网上,包括热休克因子(HSF) 1HSF2转录因子。在15个基因而不是以前和HSF2绑定网站与热休克反应有关。得出结论,加上微阵列实验上游启动子可以用来分析确定新的基因响应热休克。额外的实验需要验证这些假定的热休克蛋白和促进一个更深的理解机制在应激反应。

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