Ajioka Richard S, Levy Joanne E, Andrews Nancy C, Kushner James P
Division of Hematology, Department of Internal Medicine, University of Utah School of Medicine, Salt Lake City 84132, USA.
Blood. 2002 Aug 15;100(4):1465-9. doi: 10.1182/blood-2001-11-0037.
Hereditary hemochromatosis is most commonly caused by homozygosity for a point mutation (C282Y) in the human hemochromatosis gene (HFE). The mechanism by which HFE regulates iron absorption is not known, but the C282Y mutation results in loss of cell surface expression of the human hemachromatosis protein (HFE) and hyperabsorption of iron by the duodenal enterocyte. Mice homozygous for a deletion in the mouse hemochromatosis gene (Hfe) or a mutation equivalent to that seen in human hereditary hemochromatosis (C282Y) were compared with wild-type animals for their ability to regulate iron absorption. Both mutant strains hyperabsorbed (59)Fe administered by gavage. Feeding a diet supplemented with carbonyl iron resulted in a more than 5-fold reduction of (59)Fe absorption in both wild-type and mutant mouse strains. Similarly, the iron loading associated with age in Hfe mutant mice resulted in nearly a 4-fold reduction in iron absorption. When mice were stimulated to absorb iron either by depleting iron stores or by inducing erythropoiesis, wild type and Hfe mutant strains increased absorption to similar levels, approximately 5-fold over control values. Our data indicate that Hfe mutant mice retain the ability to regulate iron absorption. Mouse hemachromatosis protein (Hfe) plays a minor role in down-regulation but does not influence the up-regulation of iron absorption.
遗传性血色素沉着症最常见的病因是人类血色素沉着症基因(HFE)中的一个点突变(C282Y)的纯合性。HFE调节铁吸收的机制尚不清楚,但C282Y突变导致人类血色素沉着症蛋白(HFE)的细胞表面表达缺失以及十二指肠肠细胞对铁的过度吸收。将小鼠血色素沉着症基因(Hfe)缺失或具有与人类遗传性血色素沉着症中所见类似突变(C282Y)的纯合小鼠与野生型动物在调节铁吸收的能力方面进行比较。两种突变株对通过灌胃给予的(59)Fe均过度吸收。给野生型和突变型小鼠品系喂食补充了羰基铁的饮食导致(59)Fe吸收减少超过5倍。同样,Hfe突变小鼠中与年龄相关的铁负荷导致铁吸收减少近4倍。当通过耗尽铁储备或诱导红细胞生成刺激小鼠吸收铁时,野生型和Hfe突变株的铁吸收增加到相似水平,约为对照值的5倍。我们的数据表明,Hfe突变小鼠保留了调节铁吸收的能力。小鼠血色素沉着症蛋白(Hfe)在下调铁吸收中起次要作用,但不影响铁吸收的上调。