低氧诱导因子-2α而非低氧诱导因子-1α促进小鼠铁吸收。

HIF-2alpha, but not HIF-1alpha, promotes iron absorption in mice.

作者信息

Mastrogiannaki Maria, Matak Pavle, Keith Brian, Simon M Celeste, Vaulont Sophie, Peyssonnaux Carole

机构信息

Institut Cochin, Université Paris Descartes, CNRS, UMR, France.

出版信息

J Clin Invest. 2009 May;119(5):1159-66. doi: 10.1172/JCI38499. Epub 2009 Apr 6.

Abstract

HIF transcription factors (HIF-1 and HIF-2) are central mediators of cellular adaptation to hypoxia. Because the resting partial pressure of oxygen is low in the intestinal lumen, epithelial cells are believed to be mildly hypoxic. Having recently established a link between HIF and the iron-regulatory hormone hepcidin, we hypothesized that HIFs, stabilized in the hypoxic intestinal epithelium, may also play critical roles in regulating intestinal iron absorption. To explore this idea, we first established that the mouse duodenum, the site of iron absorption in the intestine, is hypoxic and generated conditional knockout mice that lacked either Hif1a or Hif2a specifically in the intestinal epithelium. Using these mice, we found that HIF-1alpha was not necessary for iron absorption, whereas HIF-2alpha played a crucial role in maintaining iron balance in the organism by directly regulating the transcription of the gene encoding divalent metal transporter 1 (DMT1), the principal intestinal iron transporter. Specific deletion of Hif2a led to a decrease in serum and liver iron levels and a marked decrease in liver hepcidin expression, indicating the involvement of an induced systemic response to counteract the iron deficiency. This finding may provide a basis for the development of new strategies, specifically in targeting HIF-2alpha, to improve iron homeostasis in patients with iron disorders.

摘要

低氧诱导因子转录因子(HIF-1和HIF-2)是细胞适应低氧环境的核心调节因子。由于肠腔内氧的静息分压较低,上皮细胞被认为处于轻度低氧状态。最近我们发现了HIF与铁调节激素铁调素之间的联系,因此推测,在低氧的肠上皮细胞中稳定存在的HIFs,可能在调节肠道铁吸收方面也发挥着关键作用。为了探究这一想法,我们首先证实,小鼠十二指肠(肠道中铁吸收的部位)处于低氧状态,并构建了条件性敲除小鼠,使其肠上皮细胞中特异性缺失Hif1a或Hif2a。利用这些小鼠,我们发现HIF-1α对于铁吸收并非必需,而HIF-2α通过直接调控编码二价金属转运体1(DMT1,肠道主要的铁转运体)的基因转录,在维持机体铁平衡方面发挥着关键作用。特异性敲除Hif2a导致血清和肝脏铁水平降低,肝脏铁调素表达显著减少,这表明机体通过诱导系统性反应来应对铁缺乏。这一发现可能为开发新策略提供基础,特别是针对HIF-2α,以改善铁代谢紊乱患者的铁稳态。

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