Canonne-Hergaux F, Fleming M D, Levy J E, Gauthier S, Ralph T, Picard V, Andrews N C, Gros P
Department of Biochemistry, McGill University, Montreal, Quebec, Canada.
Blood. 2000 Dec 1;96(12):3964-70.
Microcytic anemia (mk) mice and Belgrade (b) rats are severely iron deficient because of impaired intestinal iron absorption and defective iron metabolism in peripheral tissues. Both animals carry a glycine to arginine substitution at position 185 in the iron transporter known as Nramp2/DMT1 (divalent metal transporter 1). DMT1 messenger RNA (mRNA) and protein expression has been examined in the gastrointestinal tract of mk mice. Northern blot analysis indicates that, by comparison to mk/+ heterozygotes, mk/mk homozygotes show a dramatic increase in the level of DMT1 mRNA in the duodenum. This increase in RNA expression is paralleled by a concomitant increase of the 100-kd DMT1 isoform I protein expression in the duodenum. Immunohistochemical analyses show that, as for normal mice on a low-iron diet, DMT1 expression in enterocytes of mk/mk mice is restricted to the duodenum. However, and in contrast to normal enterocytes, little if any expression of DMT1 is seen at the apical membrane in mk/mk mice. These results suggest that the G185R mutation, which was shown to impair the transport properties of DMT1, also affects the membrane targeting of the protein in mk/mk enterocytes. This loss of function of DMT1 is paralleled by a dramatic increase in expression of the defective protein in mk/mk mice. This is consistent with a feedback regulation of DMT1 expression by iron stores. (Blood. 2000;96:3964-3970)
小细胞性贫血(mk)小鼠和贝尔格莱德(b)大鼠存在严重的铁缺乏,这是由于肠道铁吸收受损以及外周组织中铁代谢缺陷所致。这两种动物在铁转运蛋白Nramp2/DMT1(二价金属转运体1)的第185位氨基酸处发生了甘氨酸到精氨酸的替换。已对mk小鼠胃肠道中的DMT1信使核糖核酸(mRNA)和蛋白质表达进行了检测。Northern印迹分析表明,与mk/+杂合子相比,mk/mk纯合子十二指肠中DMT1 mRNA水平显著升高。RNA表达的这种增加与十二指肠中100-kd DMT1同工型I蛋白表达的相应增加平行。免疫组织化学分析显示,与低铁饮食的正常小鼠一样,mk/mk小鼠肠细胞中的DMT1表达仅限于十二指肠。然而,与正常肠细胞不同的是,在mk/mk小鼠的顶端膜上几乎看不到DMT1的表达。这些结果表明,已证明会损害DMT1转运特性的G185R突变,也会影响mk/mk肠细胞中该蛋白的膜靶向。DMT1功能的这种丧失与mk/mk小鼠中缺陷蛋白表达的显著增加平行。这与铁储存对DMT1表达的反馈调节一致。(《血液》。2000年;96:3964 - 3970)