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缺氧诱导转录因子在发育中的人类和大鼠肾脏中的表达。

Expression of hypoxia-inducible transcription factors in developing human and rat kidneys.

作者信息

Bernhardt W M, Schmitt R, Rosenberger C, Münchenhagen P M, Gröne H-J, Frei U, Warnecke C, Bachmann S, Wiesener M S, Willam C, Eckardt K-U

机构信息

Department of Nephrology and Medical Intensive Care, Charité, Campus Virchow-Klinikum, Humboldt University, Berlin, Germany.

出版信息

Kidney Int. 2006 Jan;69(1):114-22. doi: 10.1038/sj.ki.5000062.

Abstract

Early kidney development is associated with the coordinated branching of the renal tubular and vascular system and hypoxia has been proposed to be a major regulatory factor in this process. Under low oxygen levels, the hypoxia-inducible transcription factor (HIF) regulates the expression of genes involved in angiogenesis, erythropoiesis and glycolysis. To investigate the role of HIF in kidney development, we analyzed the temporal and spatial expression of the oxygen regulated HIF-1alpha and -2alpha subunits at different stages of rat and human kidney development. Using double-staining procedures, localization of the HIF target geneproducts vascular endothelial growth factor (VEGF) and endoglin was studied in relation to HIFalpha. In both species, we found marked nuclear expression of HIF-1alpha in medullary and cortical collecting ducts and in glomerular cells. In contrast, HIF-2alpha was expressed in interstitial and peritubular cells podocytes of the more mature glomeruli. After completion of glomerulogenesis and nephrogenesis, HIF-1alpha and -2alpha were no longer detectable. The HIF-target gene VEGF colocalized with HIF-1alpha protein in glomeruli and medullary collecting ducts. HIF-2alpha colocalized with the endothelium-associated angiogenic factor, endoglin. Both HIFalpha isoforms are activated in the developing kidney in a cell-specific and temporally controlled manner, indicating a regulatory role of oxygen tension in nephrogenesis. HIF-1alpha seems to be primarily involved in tubulogenesis and HIF-2alpha in renal vasculogenesis. Both isoforms are found in glomerulogenesis, potentially having synergistic effects.

摘要

早期肾脏发育与肾小管和血管系统的协同分支相关,并且缺氧被认为是这一过程中的主要调节因子。在低氧水平下,缺氧诱导转录因子(HIF)调节参与血管生成、红细胞生成和糖酵解的基因表达。为了研究HIF在肾脏发育中的作用,我们分析了大鼠和人类肾脏发育不同阶段氧调节的HIF-1α和-2α亚基的时空表达。使用双重染色程序,研究了HIF靶基因产物血管内皮生长因子(VEGF)和内皮糖蛋白与HIFα的定位关系。在这两个物种中,我们发现HIF-1α在髓质和皮质集合管以及肾小球细胞中均有明显的核表达。相比之下,HIF-2α在更成熟肾小球的间质细胞、肾小管周细胞和足细胞中表达。在肾小球生成和肾单位形成完成后,HIF-1α和-2α不再可检测到。HIF靶基因VEGF与HIF-1α蛋白在肾小球和髓质集合管中共定位。HIF-2α与内皮相关血管生成因子内皮糖蛋白共定位。两种HIFα异构体在发育中的肾脏中以细胞特异性和时间可控的方式被激活,表明氧张力在肾单位形成中起调节作用。HIF-1α似乎主要参与肾小管形成,而HIF-2α主要参与肾脏血管生成。两种异构体都存在于肾小球生成过程中,可能具有协同作用。

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