Department of Human Genetics, University of Chicago, Chicago, Illinois, United States of America.
PLoS One. 2013 Apr 30;8(4):e61654. doi: 10.1371/journal.pone.0061654. Print 2013.
Glucocorticoids (GCs) are key mediators of stress response and are widely used as pharmacological agents to treat immune diseases, such as asthma and inflammatory bowel disease, and certain types of cancer. GCs act mainly by activating the GC receptor (GR), which interacts with other transcription factors to regulate gene expression. Here, we combined different functional genomics approaches to gain molecular insights into the mechanisms of action of GC. By profiling the transcriptional response to GC over time in 4 Yoruba (YRI) and 4 Tuscans (TSI) lymphoblastoid cell lines (LCLs), we suggest that the transcriptional response to GC is variable not only in time, but also in direction (positive or negative) depending on the presence of specific interacting transcription factors. Accordingly, when we performed ChIP-seq for GR and NF-κB in two YRI LCLs treated with GC or with vehicle control, we observed that features of GR binding sites differ for up- and down-regulated genes. Finally, we show that eQTLs that affect expression patterns only in the presence of GC are 1.9-fold more likely to occur in GR binding sites, compared to eQTLs that affect expression only in its absence. Our results indicate that genetic variation at GR and interacting transcription factors binding sites influences variability in gene expression, and attest to the power of combining different functional genomic approaches.
糖皮质激素(GCs)是应激反应的主要介质,被广泛用作治疗免疫疾病(如哮喘和炎症性肠病以及某些类型的癌症)的药物。GCs 主要通过激活糖皮质激素受体(GR)起作用,GR 与其他转录因子相互作用以调节基因表达。在这里,我们结合了不同的功能基因组学方法来深入了解 GC 的作用机制。通过在 4 个 Yoruba(YRI)和 4 个托斯卡纳(TSI)淋巴母细胞系(LCL)中随时间对 GC 的转录反应进行分析,我们表明 GC 的转录反应不仅在时间上而且在方向(阳性或阴性)上都是可变的,这取决于特定相互作用的转录因子的存在。因此,当我们在用 GC 或对照药物处理的两个 YRI LCL 中进行 GR 和 NF-κB 的 ChIP-seq 时,我们观察到上调和下调基因的 GR 结合位点特征不同。最后,我们表明,仅在存在 GC 的情况下影响表达模式的 eQTL 发生在 GR 结合位点的可能性是仅在其不存在的情况下影响表达的 eQTL 的 1.9 倍。我们的研究结果表明,GR 和相互作用的转录因子结合位点的遗传变异影响基因表达的可变性,并证明了结合不同功能基因组学方法的强大功能。