Renal stromal mi RNA s are required for normal nephrogenesis and glomerular mesangial survival

YL Phua, JYS Chu, AK Marrone, AJ Bodnar… - Physiological …, 2015 - Wiley Online Library
YL Phua, JYS Chu, AK Marrone, AJ Bodnar, S Sims‐Lucas, J Ho
Physiological reports, 2015Wiley Online Library
Micro RNA s are small noncoding RNA s that post‐transcriptionally regulate m RNA levels.
While previous studies have demonstrated that mi RNA s are indispensable in the nephron
progenitor and ureteric bud lineage, little is understood about stromal mi RNA s during
kidney development. The renal stroma (marked by expression of FoxD1) gives rise to the
renal interstitium, a subset of peritubular capillaries, and multiple supportive vascular cell
types including pericytes and the glomerular mesangium. In this study, we generated FoxD1 …
Abstract
MicroRNAs are small noncoding RNAs that post‐transcriptionally regulate mRNA levels. While previous studies have demonstrated that miRNAs are indispensable in the nephron progenitor and ureteric bud lineage, little is understood about stromal miRNAs during kidney development. The renal stroma (marked by expression of FoxD1) gives rise to the renal interstitium, a subset of peritubular capillaries, and multiple supportive vascular cell types including pericytes and the glomerular mesangium. In this study, we generated FoxD1GC;Dicerfl/fl transgenic mice that lack miRNA biogenesis in the FoxD1 lineage. Loss of Dicer activity resulted in multifaceted renal anomalies including perturbed nephrogenesis, expansion of nephron progenitors, decreased renin‐expressing cells, fewer smooth muscle afferent arterioles, and progressive mesangial cell loss in mature glomeruli. Although the initial lineage specification of FoxD1+ stroma was not perturbed, both the glomerular mesangium and renal interstitium exhibited ectopic apoptosis, which was associated with increased expression of Bcl2l11 (Bim) and p53 effector genes (Bax, Trp53inp1, Jun, Cdkn1a, Mmp2, and Arid3a). Using a combination of high‐throughput miRNA profiling of the FoxD1+‐derived cells and mRNA profiling of differentially expressed transcripts in FoxD1GC;Dicerfl/fl kidneys, at least 72 miRNA:mRNA target interactions were identified to be suppressive of the apoptotic program. Together, the results support an indispensable role for stromal miRNAs in the regulation of apoptosis during kidney development.
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