Department of Pediatrics, Tulane University School of Medicine , New Orleans, Louisiana.
Department of Pediatrics, University of Virginia , Charlottesville, Virginia.
Am J Physiol Regul Integr Comp Physiol. 2019 May 1;316(5):R640-R650. doi: 10.1152/ajpregu.00320.2018. Epub 2019 Apr 3.
Formation of the metanephric kidney requires coordinated interaction among the stroma, ureteric bud, and cap mesenchyme. The transcription factor Foxd1, a specific marker of renal stromal cells, is critical for normal kidney development. The prorenin receptor (PRR), a receptor for renin and prorenin, is also an accessory subunit of the vacuolar proton pump V-ATPase. Global loss of PRR is embryonically lethal in mice, indicating an essential role of the PRR in embryonic development. Here, we report that conditional deletion of the in Foxd1 stromal progenitors in mice () results in neonatal mortality. The kidneys of surviving mice show reduced expression of stromal markers Foxd1 and Meis1 and a marked decrease in arterial and arteriolar development with the subsequent decreased number of glomeruli, expansion of Six2 nephron progenitors, and delay in nephron differentiation. Intrarenal arteries and arterioles in mice were fewer and thinner and showed a marked decrease in the expression of renin, suggesting a central role for the PRR in the development of renin-expressing cells, which in turn are essential for the proper formation of the renal arterial tree. We conclude that stromal PRR is crucial for the appropriate differentiation of the renal arterial tree, which in turn may restrict excessive expansion of nephron progenitors to promote a coordinated and proper morphogenesis of the nephrovascular structures of the mammalian kidney.
后肾的形成需要间质、输尿管芽和帽状间充质之间的协调相互作用。转录因子 Foxd1 是肾脏间质细胞的特异性标志物,对正常肾脏发育至关重要。原肾素受体 (PRR) 是肾素和原肾素的受体,也是液泡质子泵 V-ATPase 的辅助亚基。PRR 在小鼠中的全局缺失在胚胎期是致命的,这表明 PRR 在胚胎发育中起着重要作用。在这里,我们报告在小鼠中条件性删除 Foxd1 间质祖细胞中的 ()导致新生儿死亡率。存活小鼠的肾脏表现出基质标志物 Foxd1 和 Meis1 的表达减少,动脉和小动脉发育明显减少,随后肾小球数量减少,Six2 肾祖细胞扩张,以及肾单位分化延迟。 小鼠的肾内动脉和小动脉数量较少且较薄,肾素的表达明显减少,提示 PRR 在表达肾素的细胞发育中起核心作用,而这些细胞对于适当形成肾脏动脉树是必不可少的。我们得出结论,间质 PRR 对于适当分化肾脏动脉树至关重要,这反过来又可能限制肾祖细胞的过度扩张,以促进哺乳动物肾脏的肾血管结构的协调和适当形态发生。