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缺氧诱导因子-2α 和铁吸收基因在贝尔格莱德大鼠肠道中的表达。

Hypoxia-inducible factor-2α and iron absorptive gene expression in Belgrade rat intestine.

机构信息

The Feist-Weiller Cancer Center, Department of Medicine, Louisiana State University Health Sciences Center, Shreveport, 71130, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2011 Jul;301(1):G82-90. doi: 10.1152/ajpgi.00538.2010. Epub 2011 Mar 24.

Abstract

The divalent metal transporter (DMT1, Slc11a2) is an important molecule for intestinal iron absorption. In the Belgrade (b/b) rat, the DMT1 G185R mutation markedly decreases intestinal iron absorption. We used b/b rats as a model to examine the genes that could be compensatory for decreased iron absorption. When tissue hypoxia was assayed by detecting pimonidazole HCl adducts, the b/b liver and intestine exhibited more adducts than the +/+ rats, suggesting that hypoxia might signal altered gene expression. Total RNA in the crypt-villus bottom (C-pole) and villus top (V-pole) of +/+, b/b, and iron-fed b/b rats was isolated for gene array analyses. In addition, hepatic hepcidin and intestinal hypoxia-inducible factor-α (Hifα) expression were examined. The results showed that expression of hepatic hepcidin was significantly decreased and intestinal Hif2α was significantly increased in b/b and iron-fed b/b than +/+ rats. In b/b rats, the expression of Tfrc mRNA in the C-pole and of DMT1, Dcytb, FPN1, Heph, Hmox1, and ZIP14 mRNAs in the V-pole were markedly enhanced with increases occurring even in the C-pole. After iron feeding, the increased expression found in b/b rats persisted, except for Heph and ZIP14, which returned to normal levels. Thus in b/b rats depressed liver hepcidin production and activated intestinal Hif2α starting at the C-pole resulted in increasing expression of iron transport genes, including DMT1 G185R, in an attempt to compensate for the anemia in Belgrade rats.

摘要

二价金属转运蛋白(DMT1,Slc11a2)是肠道铁吸收的重要分子。在贝尔格莱德(b/b)大鼠中,DMT1 G185R 突变显著降低了肠道铁吸收。我们使用 b/b 大鼠作为模型,研究了可能代偿铁吸收减少的基因。通过检测 pimonidazole HCl 加合物来检测组织缺氧时,b/b 大鼠的肝脏和肠道比 +/+ 大鼠有更多的加合物,这表明缺氧可能会改变基因表达。分离 +/+, b/b 和铁喂养 b/b 大鼠的隐窝-绒毛底部(C 极)和绒毛顶部(V 极)的总 RNA,用于基因芯片分析。此外,还检测了肝内铁调素和肠缺氧诱导因子-α(Hifα)的表达。结果表明,b/b 和铁喂养 b/b 大鼠的肝内 hepcidin 表达显著降低,肠内 Hif2α 表达显著增加,而 +/+ 大鼠则没有。在 b/b 大鼠中,C 极的 Tfrc mRNA 表达和 V 极的 DMT1、Dcytb、FPN1、Heph、Hmox1 和 ZIP14 mRNA 表达明显增强,甚至在 C 极也有增加。铁喂养后,b/b 大鼠的表达增加持续存在,除了 Heph 和 ZIP14,它们恢复到正常水平。因此,在 b/b 大鼠中,肝脏 hepcidin 产生减少和肠道 Hif2α 激活从 C 极开始,导致包括 DMT1 G185R 在内的铁转运基因表达增加,试图代偿贝尔格莱德大鼠的贫血。

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