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首页> 外文期刊>Frontiers in Physiology >EDN1-AS, A Novel Long Non-coding RNA Regulating Endothelin-1 in Human Proximal Tubule Cells
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EDN1-AS, A Novel Long Non-coding RNA Regulating Endothelin-1 in Human Proximal Tubule Cells

机译:<斜视> EDN1-as ,一种新型的长非编码RNA调节人近端小管细胞内皮-1

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Endothelin-1 (ET-1) is a peptide hormone that functions as a vasoconstrictor in the vasculature, whereas in the collecting duct of the kidney it exerts blood pressure-lowering effects via natriuretic actions. Aberrant ET-1 signaling is associated with several pathological states including hypertension and chronic kidney disease. ET-1 expression is regulated largely through transcriptional control of the gene that encodes ET-1, EDN1 . Here we report a long, non-coding RNA (lncRNA) that appears to be antisense to the EDN1 gene, called EDN1-AS . Because EDN1-AS represents a potential novel mechanism to regulate ET-1 expression, we examined the regulation of EDN1-AS expression and action. A putative glucocorticoid receptor response (GR) element upstream of the predicted EDN1-AS transcription start site was identified using the ENCODE database and the UCSC genome browser. Two homozygous deletion clones of the element were generated using CRISPR/Cas9. This deletion resulted in a significant increase in the expression of EDN1-AS , which was associated with increased secretion of ET-1 peptide from HK-2 cells (two-fold increase in KO cells vs. CNTL, n = 7, P & 0.05). Phenotypic characterization of these CRISPR clones revealed a difference in cell growth rates. Using a standard growth assay, we determined that the KO1 clone exhibited a three-fold increase in growth over 8 days compared to control cells ( n = 4, P & 0.01) and the KO2 clone exhibited a two-fold increase ( n = 4, P & 0.01). These results support a role for EDN1-AS as a novel regulatory mechanism of ET-1 expression and cellular proliferation.
机译:内皮素-1(ET-1)是一种肽激素,其用作脉管系统中的血管收缩剂,而在肾脏的收集管道中,它通过利尿动作施加血压降低效应。异常ET-1信号传导与包括高血压和慢性肾病的几种病理状态有关。 ET-1表达在很大程度上通过编码ET-1,EDN1的基因的转录控制来调节。在这里,我们报告了似乎对EDN1基因的似乎反义,称为EDN1-AS的长的非编码RNA(LNCRNA)。因为EDN1-至代表潜在的新方法来调节ET-1表达,我们检查了EDN1的调节为表达和动作。使用编码数据库和UCSC基因组浏览器识别预测的EDN1-AS转录开始部位上游的推定的糖皮质激素受体响应(GR)元件。使用CRISPR / CAS9生成元素的两个纯合缺失克隆。该缺失导致EDN1的表达显着增加,其与HK-2细胞的ET-1肽的分泌增加相关(KO细胞对CNT1的两倍增加,N = 7,P&LT; 0.05)。这些CRISPR克隆的表型表​​征揭示了细胞生长速率的差异。使用标准的生长测定,与对照细胞相比,KO1克隆在8天内表现出3倍的增长(n = 4,p <0.01),并且KO2克隆增加了两倍(n = 4,p& 0.01)。这些结果支持EDN1的作用 - 作为ET-1表达和细胞增殖的新调节机制。

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