Kann Martin, Ettou Sandrine, Jung Youngsook L, Lenz Maximilian O, Taglienti Mary E, Park Peter J, Schermer Bernhard, Benzing Thomas, Kreidberg Jordan A
Division of Nephrology, Department of Medicine and Department II of Internal Medicine and Center for Molecular Medicine Cologne and.
Division of Nephrology, Department of Medicine and.
J Am Soc Nephrol. 2015 Sep;26(9):2097-104. doi: 10.1681/ASN.2014090940. Epub 2015 Jan 30.
The transcription factor Wilms' tumor suppressor 1 (WT1) is key to podocyte development and viability; however, WT1 transcriptional networks in podocytes remain elusive. We provide a comprehensive analysis of the genome-wide WT1 transcriptional network in podocytes in vivo using chromatin immunoprecipitation followed by sequencing (ChIPseq) and RNA sequencing techniques. Our data show a specific role for WT1 in regulating the podocyte-specific transcriptome through binding to both promoters and enhancers of target genes. Furthermore, we inferred a podocyte transcription factor network consisting of WT1, LMX1B, TCF21, Fox-class and TEAD family transcription factors, and MAFB that uses tissue-specific enhancers to control podocyte gene expression. In addition to previously described WT1-dependent target genes, ChIPseq identified novel WT1-dependent signaling systems. These targets included components of the Hippo signaling system, underscoring the power of genome-wide transcriptional-network analyses. Together, our data elucidate a comprehensive gene regulatory network in podocytes suggesting that WT1 gene regulatory function and podocyte cell-type specification can best be understood in the context of transcription factor-regulatory element network interplay.
转录因子肾母细胞瘤抑制因子1(WT1)是足细胞发育和存活的关键;然而,足细胞中的WT1转录网络仍不清楚。我们使用染色质免疫沉淀测序(ChIPseq)和RNA测序技术,对体内足细胞中全基因组范围的WT1转录网络进行了全面分析。我们的数据显示,WT1通过与靶基因的启动子和增强子结合,在调节足细胞特异性转录组中发挥特定作用。此外,我们推断出一个足细胞转录因子网络,该网络由WT1、LMX1B、TCF21、Fox家族和TEAD家族转录因子以及MAFB组成,它们利用组织特异性增强子来控制足细胞基因表达。除了先前描述的WT1依赖性靶基因外,ChIPseq还鉴定了新的WT1依赖性信号系统。这些靶标包括Hippo信号系统的组成部分,突出了全基因组转录网络分析的作用。总之,我们的数据阐明了足细胞中一个全面的基因调控网络,表明WT1基因调控功能和足细胞细胞类型特异性最好在转录因子-调控元件网络相互作用的背景下理解。