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脯氨酰-4-羟化酶2和3控制小鼠肾脏中表达肾素细胞的促红细胞生成素产生。

Prolyl-4-hydroxylases 2 and 3 control erythropoietin production in renin-expressing cells of mouse kidneys.

作者信息

Broeker Katharina A E, Fuchs Michaela A A, Schrankl Julia, Lehrmann Claudia, Schley Gunnar, Todorov Vladimir T, Hugo Christian, Wagner Charlotte, Kurtz Armin

机构信息

Institute of Physiology, University of Regensburg, Regensburg, Germany.

Institute of Physiology II, University of Regensburg, Regensburg, Germany.

出版信息

J Physiol. 2022 Feb;600(3):671-694. doi: 10.1113/JP282615. Epub 2021 Dec 27.

Abstract

Activation of the hypoxia-signalling pathway induced by deletion of the ubiquitin-ligase von Hippel-Lindau protein causes an endocrine shift of renin-producing cells to erythropoietin (EPO)-expressing cells. However, the underlying mechanisms have not yet been investigated. Since oxygen-regulated stability of hypoxia-inducible transcription factors relevant for EPO expression is dependent on the activity of prolyl-4-hydroxylases (PHD) 2 and 3, this study aimed to determine the relevance of different PHD isoforms for the EPO expression in renin-producing cells in vivo. For this purpose, mice with inducible renin cell-specific deletions of different PHD isoforms were analysed. Our study shows that there are two subgroups of renal renin-expressing cells, juxtaglomerular renin cells and platelet-derived growth factor receptor-β interstitial renin cells. These interstitial renin cells belong to the cell pool of native EPO-producing cells and are able to express EPO and renin in parallel. In contrast, co-deletion of PHD2 and PHD3, but not PHD2 deletion alone, induces EPO expression in juxtaglomerular and hyperplastic renin cells and downregulates renin expression. A strong basal PHD3 expression in juxtaglomerular renin cells seems to prevent the hypoxia-inducible transcription factor-2-dependent phenotype shift into EPO cells. In summary, PHDs seem important for the stabilization of the juxtaglomerular renin cell phenotype. Moreover, these findings reveal tubulointerstitial cells as a novel site of renal renin expression and suggest a high endocrine plasticity of these cells. Our data concerning the distinct expression patterns and functions of PHD2 and PHD3 provide new insights into the regulation of renin-producing cells and highlight the need for selective PHD inhibitors. KEY POINTS: Renal renin-expressing cells can be clearly distinguished into two subgroups, the typical juxtaglomerular renin-producing cells and interstitial renin cells. Interstitial renin cells belong to the cell pool of native erythropoietin (EPO)-producing cells, show a fast EPO response to acute hypoxia-inducible factor-2 (HIF-2) stabilization and are able to express EPO and renin in parallel. Only co-deletion of the prolyl-4-hydroxylases (PHD) 2 and 3, but not PHD2 deletion alone, induces EPO expression in juxtaglomerular renin cells. Chronic HIF-2 stabilization in juxtaglomerular renin-expressing cells leads to their phenotypic shift into EPO-producing cells. A strong basal PHD3 expression in juxtaglomerular renin cells seems to prevent a HIF-2-dependent phenotype shift into EPO cells suggesting PHD3 fulfils a stabilizer function for the juxtaglomerular renin cell phenotype.

摘要

泛素连接酶冯·希佩尔-林道蛋白缺失所诱导的缺氧信号通路激活,会导致产生肾素的细胞向表达促红细胞生成素(EPO)的细胞发生内分泌转变。然而,其潜在机制尚未得到研究。由于与EPO表达相关的缺氧诱导转录因子的氧调节稳定性依赖于脯氨酰-4-羟化酶(PHD)2和3的活性,本研究旨在确定不同PHD亚型在体内对产生肾素的细胞中EPO表达的相关性。为此,分析了不同PHD亚型可诱导性肾素细胞特异性缺失的小鼠。我们的研究表明,肾内表达肾素的细胞有两个亚组,即球旁肾素细胞和血小板衍生生长因子受体-β间质肾素细胞。这些间质肾素细胞属于天然产生EPO的细胞池,能够同时表达EPO和肾素。相比之下,PHD2和PHD3共同缺失而非单独缺失PHD2,会诱导球旁和增生性肾素细胞中EPO表达,并下调肾素表达。球旁肾素细胞中强烈的基础PHD3表达似乎可防止缺氧诱导转录因子-2依赖性表型转变为EPO细胞。总之,PHD似乎对球旁肾素细胞表型的稳定很重要。此外,这些发现揭示了肾小管间质细胞是肾内肾素表达的新位点,并表明这些细胞具有高度的内分泌可塑性。我们关于PHD2和PHD3不同表达模式和功能的数据,为产生肾素细胞的调节提供了新见解,并突出了对选择性PHD抑制剂的需求。要点:肾内表达肾素的细胞可明确分为两个亚组,即典型的球旁产肾素细胞和间质肾素细胞。间质肾素细胞属于天然促红细胞生成素(EPO)产生细胞池,对急性缺氧诱导因子-2(HIF-2)稳定化表现出快速EPO反应,且能够同时表达EPO和肾素。只有脯氨酰-4-羟化酶(PHD)2和3共同缺失而非单独缺失PHD2,会诱导球旁肾素细胞中EPO表达。球旁表达肾素细胞中慢性HIF-2稳定化会导致其表型转变为产生EPO的细胞。球旁肾素细胞中强烈的基础PHD3表达似乎可防止HIF-2依赖性表型转变为EPO细胞,提示PHD3对球旁肾素细胞表型发挥稳定功能。

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