Molecular Medicine Research Center and Department of Biological Sciences, University of Cyprus, Nicosia, Cyprus.
The Wistar Institute, 3601 Spruce St, Philadelphia, PA, 19104, USA.
Cell Mol Life Sci. 2020 Jun;77(12):2441-2459. doi: 10.1007/s00018-019-03294-z. Epub 2019 Sep 17.
Podocytes are highly differentiated epithelial cells outlining the glomerular vessels. FOXC2 is a transcription factor essential for inducing podocyte differentiation, development and maturation, and is considered to be the earliest podocyte marker. miRNA prediction analysis revealed a full-length target site for the primate-specific miR-548c-5p at a genomic region > 8 kb upstream of FOXC2. We hypothesised that the transcription rates of FOXC2 during podocyte differentiation might be tuned by miR-548c-5p through this target site. Experiments were performed with cultured human podocytes, transfected with luciferase reporter constructs bearing this target site region within an enhancer element of the native plasmid. The results confirmed a seed region-driven targeting potential by the miRNA, with mimics downregulating and inhibitors enhancing luciferase activity. Introducing mutations into the miRNA target seed region abolished the expected response. In cultured podocytes, FOXC2 mRNA and protein levels responded to miR-548c-5p abundance in a coordinated manner before and after induction of differentiation, with high statistical significance. Ago-ChIP experiments revealed occupancy of the miRNA target site by miRNA/RISC in undifferentiated cells and its release when differentiation is initiated, allowing its interaction with the gene's promoter region to amplify FOXC2 expression, as shown by chromosome conformation capture and qRT-PCR. Moreover, the expression pattern of FOXC2 during podocyte differentiation seems to be affected by miR-548c-5p, as removal of either endogenous or mimic miR-548c-5p results in increased FOXC2 protein levels and cells resembling those undergoing differentiation. Collectively, results indicate a well-orchestrated regulatory model of FOXC2 expression by a remote upstream target site for miR-548c-5p.
足细胞是高度分化的上皮细胞,包绕着肾小球血管。FOXC2 是一种转录因子,对于诱导足细胞分化、发育和成熟至关重要,被认为是最早的足细胞标志物。miRNA 预测分析显示,在 FOXC2 的基因组区域上游 > 8kb 处存在一个完整的、针对灵长类动物特异性 miR-548c-5p 的靶位点。我们假设,miR-548c-5p 可能通过这个靶位点来调节足细胞分化过程中 FOXC2 的转录率。实验在培养的人足细胞中进行,这些细胞转染了携带天然质粒增强子区域内该靶位点的荧光素酶报告构建体。实验结果证实了 miRNA 通过种子区域驱动靶向作用的潜力,miRNA 模拟物下调荧光素酶活性,而抑制剂则增强其活性。将 miRNA 靶标种子区域的突变引入后,这种预期的反应就会被消除。在培养的足细胞中,FOXC2 mRNA 和蛋白水平在分化诱导前后都以协调的方式对 miR-548c-5p 的丰度做出反应,具有高度统计学意义。AGO-ChIP 实验显示,在未分化细胞中,miRNA/RISC 占据 miRNA 靶位点,当分化开始时,该位点被释放,允许其与基因的启动子区域相互作用,从而放大 FOXC2 的表达,这一点通过染色体构象捕获和 qRT-PCR 得到证实。此外,FOXC2 在足细胞分化过程中的表达模式似乎受到 miR-548c-5p 的影响,因为无论是内源 miR-548c-5p 的去除还是 mimics miR-548c-5p 的去除都会导致 FOXC2 蛋白水平升高,细胞形态类似于正在分化的细胞。总之,这些结果表明,miR-548c-5p 通过其远程上游靶位点对 FOXC2 表达进行了精心协调的调控。