Boyd Mette, Coskun Mehmet, Lilje Berit, Andersson Robin, Hoof Ilka, Bornholdt Jette, Dahlgaard Katja, Olsen Jørgen, Vitezic Morana, Bjerrum Jacob Tveiten, Seidelin Jakob Benedict, Nielsen Ole Haagen, Troelsen Jesper Thorvald, Sandelin Albin
The Bioinformatics Centre, Department of Biology & Biotech Research and Innovation Centre (BRIC), University of Copenhagen, Ole Maaloes Vej 5, Copenhagen DK-2200, Denmark.
The Bioinformatics Centre, Department of Biology & Biotech Research and Innovation Centre (BRIC), University of Copenhagen, Ole Maaloes Vej 5, Copenhagen DK-2200, Denmark Department of Gastroenterology, Medical Section, University of Copenhagen, Herlev Hospital, Herlev DK-2730, Denmark.
DNA Res. 2014 Dec;21(6):569-83. doi: 10.1093/dnares/dsu022. Epub 2014 Jul 2.
The Caco-2 cell line is one of the most important in vitro models for enterocytes, and is used to study drug absorption and disease, including inflammatory bowel disease and cancer. In order to use the model optimally, it is necessary to map its functional entities. In this study, we have generated genome-wide maps of active transcription start sites (TSSs), and active enhancers in Caco-2 cells with or without tumour necrosis factor (TNF)-α stimulation to mimic an inflammatory state. We found 520 promoters that significantly changed their usage level upon TNF-α stimulation; of these, 52% are not annotated. A subset of these has the potential to confer change in protein function due to protein domain exclusion. Moreover, we locate 890 transcribed enhancer candidates, where ∼50% are changing in usage after TNF-α stimulation. These enhancers share motif enrichments with similarly responding gene promoters. As a case example, we characterize an enhancer regulating the laminin-5 γ2-chain (LAMC2) gene by nuclear factor (NF)-κB binding. This report is the first to present comprehensive TSS and enhancer maps over Caco-2 cells, and highlights many novel inflammation-specific promoters and enhancers.
Caco-2细胞系是肠上皮细胞最重要的体外模型之一,用于研究药物吸收和疾病,包括炎症性肠病和癌症。为了最佳地使用该模型,有必要绘制其功能实体图谱。在本研究中,我们绘制了有或无肿瘤坏死因子(TNF)-α刺激以模拟炎症状态的Caco-2细胞中活性转录起始位点(TSS)和活性增强子的全基因组图谱。我们发现520个启动子在TNF-α刺激后其使用水平发生了显著变化;其中52%未被注释。这些启动子中的一部分由于蛋白质结构域排除而有可能导致蛋白质功能改变。此外,我们定位了890个转录增强子候选物,其中约50%在TNF-α刺激后使用情况发生变化。这些增强子与同样有反应的基因启动子共享基序富集。作为一个实例,我们通过核因子(NF)-κB结合来表征一个调控层粘连蛋白-5γ2链(LAMC2)基因的增强子。本报告首次展示了Caco-2细胞上全面的TSS和增强子图谱,并突出了许多新的炎症特异性启动子和增强子。