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Distinct subpopulations of FOXD1 stroma-derived cells regulate renal erythropoietin

机译:FOXD1基质细胞的不同亚群调节肾脏促红细胞生成素

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Renal peritubular interstitial fibroblast-like cells are critical for adult erythropoiesis, as they are the main source of erythropoietin (EPO). Hypoxia-inducible factor 2 (HIF-2) controls EPO synthesis in the kidney and liver and is regulated by prolyl-4-hydroxylase domain (PHD) dioxygenases PHD1, PHD2, and PHD3, which function as cellular oxygen sensors. Renal interstitial cells with EPO-producing capacity are poorly characterized, and the role of the PHD/HIF-2 axis in renal EPO-producing cell (REPC) plasticity is unclear. Here we targeted the PHD/HIF-2/EPO axis in FOXD1 stroma-derived renal interstitial cells and examined the role of individual PHDs in REPC pool size regulation and renal EPO output. Renal interstitial cells with EPO-producing capacity were entirely derived from FOXD1-expressing stroma, and Phd2 inactivation alone induced renal Epo in a limited number of renal interstitial cells. EPO induction was submaximal, as hypoxia or pharmacologic PHD inhibition further increased the REPC fraction among Phd2~(–/–) renal interstitial cells. Moreover, Phd1 and Phd3 were differentially expressed in renal interstitium, and heterozygous deficiency for Phd1 and Phd3 increased REPC numbers in Phd2~(–/–) mice. We propose that FOXD1 lineage renal interstitial cells consist of distinct subpopulations that differ in their responsiveness to Phd2 inactivation and thus regulation of HIF-2 activity and EPO production under hypoxia or conditions of pharmacologic or genetic PHD inactivation.
机译:肾小管间质成纤维细胞样细胞对于成人促红细胞生成至关重要,因为它们是促红细胞生成素(EPO)的主要来源。缺氧诱导因子2(HIF-2)控制肾脏和肝脏中的EPO合成,并受脯氨酰4-羟化酶结构域(PHD)双加氧酶PHD1,PHD2和PHD3的调节,这些功能起细胞氧传感器的作用。具有EPO产生能力的肾间质细胞的特征很差,不清楚PHD / HIF-2轴在肾EPO产生细胞(REPC)可塑性中的作用。在这里,我们靶向FOXD1基质来源的肾间质细胞中的PHD / HIF-2 / EPO轴,并检查了单个PHD在REPC池大小调节和肾脏EPO输出中的作用。具有EPO产生能力的肾间质细胞完全来源于表达FOXD1的基质,仅Phd2失活会在数量有限的肾间质细胞中诱导肾Epo。由于缺氧或药理学上的PHD抑制作用进一步增加了Phd2〜(– / –)肾间质细胞中REPC的比例,因此EPO的诱导作用不大。此外,Phd1和Phd3在肾间质中差异表达,而Phd1和Phd3的杂合子缺乏增加了Phd2〜(– / –)小鼠的REPC数量。我们建议FOXD1谱系肾间质细胞由不同的亚群组成,这些亚群在对Phd2失活的反应性以及因此在缺氧或药理或遗传PHD失活条件下对HIF-2活性和EPO产生的调节不同。

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