Department of Molecular Biology, Institute of Genetics and Animal Biotechnology, PAS, 05-552 Jastrzębiec, Poland.
Department of Experimental Genomics, Institute of Genetics and Animal Biotechnology, PAS, 05-552 Jastrzębiec, Poland.
Nutrients. 2020 Dec 30;13(1):104. doi: 10.3390/nu13010104.
In mammals, 2 × 10 red blood cells (RBCs) are produced every day in the bone marrow to ensure a constant supply of iron to maintain effective erythropoiesis. Impaired iron absorption in the duodenum and inefficient iron reutilization from senescent RBCs by macrophages contribute to the development of anemia. Ferroportin (Fpn), the only known cellular iron exporter, as well as hephaestin (Heph) and ceruloplasmin, two copper-dependent ferroxidases involved in the above-mentioned processes, are key elements of the interaction between copper and iron metabolisms. Crosslinks between these metals have been known for many years, but metabolic effects of one on the other have not been elucidated to date. Neonatal iron deficiency anemia in piglets provides an interesting model for studying this interplay. In duodenal enterocytes of young anemic piglets, we identified iron deposits and demonstrated increased expression of ferritin with a concomitant decline in both Fpn and Heph expression. We postulated that the underlying mechanism involves changes in copper distribution within enterocytes as a result of decreased expression of the copper transporter-Atp7b. Obtained results strongly suggest that regulation of iron absorption within enterocytes is based on the interaction between proteins of copper and iron metabolisms and outcompetes systemic regulation.
在哺乳动物中,骨髓每天会生成 2×10 个红细胞(RBC),以确保铁的持续供应,从而维持有效的红细胞生成。十二指肠中铁的吸收受损和巨噬细胞从衰老的 RBC 中回收铁的效率低下,导致贫血的发生。亚铁转运蛋白(Fpn)是唯一已知的细胞铁输出蛋白,以及参与上述过程的两种铜依赖性亚铁氧化酶——赫普斯塔丁(Heph)和铜蓝蛋白,是铜和铁代谢之间相互作用的关键因素。这些金属之间的交联已经存在多年,但它们之间的代谢相互作用尚未得到阐明。仔猪的新生儿缺铁性贫血为研究这种相互作用提供了一个有趣的模型。在幼龄贫血仔猪的十二指肠肠细胞中,我们发现了铁沉积物,并证明了铁蛋白的表达增加,同时 Fpn 和 Heph 的表达下降。我们推测,其潜在机制涉及铜转运蛋白-Atp7b 表达下降导致肠细胞内铜分布的变化。研究结果强烈表明,肠细胞中铁吸收的调节基于铜和铁代谢蛋白之间的相互作用,并与全身调节竞争。