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Genetic and Genomics Investigation of Structure and Function of the Kidney: RNA sequencing of kidney distal tubule cells reveals multiple mediators of chronic aldosterone action

机译:肾脏的结构和功能的遗传和基因组学研究:肾脏远端肾小管细胞的RNA测序揭示了慢性醛固酮作用的多种介质

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摘要

The renal aldosterone-sensitive distal tubule (ASDT) is crucial for sodium reabsorption and blood pressure regulation. The ASDT consists of the late distal convoluted tubule (DCT2), connecting tubule (CNT), and collecting duct. Due to difficulties in isolating epithelial cells from the ASDT in large quantities, few transcriptome studies have been performed on this segment. Moreover, no studies exist on isolated DCT2 and CNT cells (excluding intercalated cells), and the role of aldosterone for regulating the transcriptome of these specific cell types is largely unknown. A mouse model expressing eGFP in DCT2/CNT/initial cortical collecting duct (iCCD) principal cells was exploited to facilitate the isolation of these cells in high number and purity. Combined with deep RNA sequencing technology, a comprehensive catalog of chronic aldosterone-regulated transcripts from enriched DCT2/CNT/iCCD principal cells was generated. There were 257 significantly downregulated and 290 upregulated transcripts in response to aldosterone (P < 0.05). The RNA sequencing confirmed aldosterone regulation of well-described aldosterone targets including Sgk1 and Tsc22d3. Changes in selected transcripts such as S100a1 and Cldn4 were confirmed by RT-qPCR. The RNA sequencing showed downregulation of Nr3c2 encoding the mineralocorticoid receptor (MR), and cell line experiments showed a parallel decrease in MR protein. Furthermore, a large number of transcripts encoding transcription factors were downregulated. An extensive mRNA transcriptome reconstruction of an enriched CNT/iCCD principal cell population was also generated. The results provided a comprehensive database of aldosterone-regulated transcripts in the ASDT, allowing development of novel hypotheses for the action of aldosterone.
机译:肾醛固酮敏感远端小管(ASDT)对于钠重吸收和血压调节至关重要。 ASDT包括晚期远端旋回小管(DCT2),连接小管(CNT)和收集管。由于难以从ASDT大量分离上皮细胞,因此对该节段进行的转录组研究很少。此外,还没有关于分离的DCT2和CNT细胞(不包括插层细胞)的研究,并且醛固酮在调节这些特定细胞类型的转录组中的作用尚不清楚。利用在DCT2 / CNT /初始皮质收集管(iCCD)主细胞中表达eGFP的小鼠模型来促进这些细胞的高纯度分离。结合深RNA测序技术,从丰富的DCT2 / CNT / iCCD主细胞中生成了由醛固酮调节的慢性转录本的完整目录。响应醛固酮有257个显着下调的转录本和290个上调的转录本(P <0.05)。 RNA测序证实了醛固酮对包括Sgk1和Tsc22d3在内的醛固酮靶标的调控。 RT-qPCR证实了所选转录本(例如S100a1和Cldn4)的变化。 RNA测序显示Nr3c2编码盐皮质激素受体(MR)的下调,并且细胞系实验显示MR蛋白平行降低。此外,编码转录因子的大量转录物被下调。还产生了丰富的CNT / iCCD主细胞群的广泛的mRNA转录组重建。结果为ASDT中醛固酮调节的转录本提供了一个全面的数据库,从而为醛固酮作用的新假设的发展提供了条件。

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