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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >A Genome-Wide Analysis of Open Chromatin in Human Epididymis Epithelial Cells Reveals Candidate Regulatory Elements for Genes Coordinating Epididymal Function
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A Genome-Wide Analysis of Open Chromatin in Human Epididymis Epithelial Cells Reveals Candidate Regulatory Elements for Genes Coordinating Epididymal Function

机译:人物附睾上皮细胞开放染色质的基因组分析显示了用于协调附睾功能的基因的候选调节元件

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The epithelium lining the epididymis has a pivotal role in ensuring a luminal environment that can support normal sperm maturation. Many of the individual genes that encode proteins involved in establishing the epididymal luminal fluid are well characterized. They include ion channels, ion exchangers, transporters, and solute carriers. However, the molecular mechanisms that coordinate expression of these genes and modulate their activities in response to biological stimuli are less well understood. To identify cis-regulatory elements for genes expressed in human epididymis epithelial cells, we generated genome-wide maps of open chromatin by DNase-seq. This analysis identified 33 542 epididymis-selective DNase 1 hypersensitive sites (DHS), which were not evident in five cell types of different lineages. Identification of genes with epididymis-selective DHS at their promoters revealed gene pathways that are active in immature epididymis epithelial cells. These include processes correlating with epithelial function and also others with specific roles in the epididymis, including retinol metabolism and ascorbate and aldarate metabolism. Peaks of epididymis-selective chromatin were seen in the androgen receptor gene and the cystic fibrosis transmembrane conductance regulator (CFTR) gene, which has a critical role in regulating ion transport across the epididymis epithelium. In silico prediction of transcription factor binding sites that were overrepresented in epididymis-selective DHS identified epithelial transcription factors, including ELF5 and ELF3, the androgen receptor, Pax2, and Sox9, as components of epididymis transcriptional networks. Active genes, which are targets of each transcription factor, reveal important biological processes in the epididymis epithelium.
机译:衬里的上皮细胞在确保可以支持正常精子成熟的腔环境方面具有关键作用。编码所涉及建立附睾腔流体的蛋白质的许多个体基因表征得很好。它们包括离子通道,离子交换剂,转运蛋白和溶质载体。然而,统一这些基因的表达并响应于生物刺激调节活性的分子机制不太清楚。为了鉴定人体附睾细胞中表达的基因的顺式调节元件,我们通过DNase-SEQ产生了开放染色质的基因组图。该分析鉴定了33 542个附睾 - 选择性DNase1过敏位点(DHS),其在五种细胞类型的不同谱系中并不明显。在其启动子上鉴定具有附睾选择性DHS的基因揭示了在不成熟的附睾上皮细胞中活性的基因途径。这些包括与上皮函数相关的方法以及附睾中具有特异性作用的方法,包括视黄醇代谢和抗坏血酸和抗坏血酸代谢。在雄激素受体基因和囊性纤维化跨膜电导调节率(CFTR)基因中观察到附睾选择性染色质的峰,这在对整个附睾上皮的调节离子输送方面具有关键作用。在异丙瘤选择性DHS中的转录因子结合位点的二氧化硅预测鉴定了上皮转录因子,包括ELF5和ELF3,雄激素受体,PAX2和SOX9,作为附睾转录网络的组分。作为每种转录因子的靶标的活性基因,揭示了附睾上皮中的重要生物过程。

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