Yang Rui, Kerschner Jenny L, Harris Ann
Human Molecular Genetics Program, Lurie Children's Research Center, Chicago, IL 60614, USA; Department of Pediatrics, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
Human Molecular Genetics Program, Lurie Children's Research Center, Chicago, IL 60614, USA; Department of Pediatrics, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA; Robert H. Lurie Comprehensive Cancer Center, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
Biochim Biophys Acta. 2016 Apr;1859(4):591-8. doi: 10.1016/j.bbagrm.2016.02.005. Epub 2016 Feb 6.
Mutations in hepatocyte nuclear factor 1 transcription factors (HNF1α/β) are associated with diabetes. These factors are well studied in the liver, pancreas and kidney, where they direct tissue-specific gene regulation. However, they also have an important role in the biology of many other tissues, including the intestine. We investigated the transcriptional network governed by HNF1 in an intestinal epithelial cell line (Caco2). We used chromatin immunoprecipitation followed by direct sequencing (ChIP-seq) to identify HNF1 binding sites genome-wide. Direct targets of HNF1 were validated using conventional ChIP assays and confirmed by siRNA-mediated depletion of HNF1, followed by RT-qPCR. Gene ontology process enrichment analysis of the HNF1 targets identified multiple processes with a role in intestinal epithelial cell function, including properties of the cell membrane, cellular response to hormones, and regulation of biosynthetic processes. Approximately 50% of HNF1 binding sites were also occupied by other members of the intestinal transcriptional network, including hepatocyte nuclear factor 4A (HNF4A), caudal type homeobox 2 (CDX2), and forkhead box A2 (FOXA2). Depletion of HNF1 in Caco2 cells increases FOXA2 abundance and decreases levels of CDX2, illustrating the coordinated activities of the network. These data suggest that HNF1 plays an important role in regulating intestinal epithelial cell function, both directly and through interactions with other intestinal transcription factors.
肝细胞核因子1转录因子(HNF1α/β)的突变与糖尿病相关。这些因子在肝脏、胰腺和肾脏中得到了充分研究,它们在这些器官中指导组织特异性基因调控。然而,它们在包括肠道在内的许多其他组织的生物学过程中也发挥着重要作用。我们研究了肠道上皮细胞系(Caco2)中由HNF1调控的转录网络。我们使用染色质免疫沉淀结合直接测序(ChIP-seq)在全基因组范围内鉴定HNF1结合位点。HNF1的直接靶标通过传统的ChIP分析进行验证,并通过siRNA介导的HNF1缺失,随后进行RT-qPCR予以确认。对HNF1靶标的基因本体过程富集分析确定了多个在肠道上皮细胞功能中起作用的过程,包括细胞膜特性、细胞对激素的反应以及生物合成过程的调控。大约50%的HNF1结合位点也被肠道转录网络的其他成员占据,包括肝细胞核因子4A(HNF4A)、尾型同源盒2(CDX2)和叉头框A2(FOXA2)。Caco2细胞中HNF1的缺失会增加FOXA2的丰度并降低CDX2的水平,这说明了该网络的协同活性。这些数据表明,HNF1在直接调控肠道上皮细胞功能以及通过与其他肠道转录因子相互作用方面都发挥着重要作用。