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硒对小鼠红细胞生成的调节作用。

The regulation of erythropoiesis by selenium in mice.

机构信息

Department of Veterinary and Biomedical Sciences, Center for Molecular Immunology and Infectious Disease, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Antioxid Redox Signal. 2011 Apr 15;14(8):1403-12. doi: 10.1089/ars.2010.3323. Epub 2011 Feb 25.

Abstract

Redox modulation by antioxidants, such as selenium (Se), has emerged as an important regulator of erythropoiesis. Using Se-deficient (0.04 ppm), Se-adequate (0.1 ppm), and Se-supplemented (0.4 ppm) C57/BL6 mice, we show that Se deficiency caused anemia, when compared to the Se-supplemented and Se-adequate groups. Increased denaturation of hemoglobin, methemoglobin, protein carbonyls, lipid peroxidation, Heinz bodies, and osmotic fragility of erythrocytes were observed in Se-deficient mice. Increased oxidative stress upregulated forkhead transcription factor (FoxO3a) and hypoxia-inducible factor-(HIF)1α in the spleen and kidney of Se-deficient murine as well as in the proerythroblast G1E cells cultured in Se-deficient media. A significant increase in the expression of erythropoietin, a downstream target of HIF1α, and expansion of stress erythroid progenitors (burst forming units-erythroid) were seen in the Se-deficient mice. Despite the increase in erythroid progenitors, lowered reticulocytes suggest a defective erythroid differentiation pathway. While Se deficiency led to increased nuclear levels of active FoxO3a, Se-adequate conditions reversed this effect and increased nuclear export by its binding partner, 14-3-3βζ, that is under the redox control of selenoproteins. In summary, these results provide insight into the importance of adequate Se nutrition in regulating red cell homeostasis by mitigating oxidative stress-dependent modulation of FoxO3a and HIF1α to effect differentiation of erythroid progenitors.

摘要

抗氧化剂(如硒)的氧化还原调节作用已成为红细胞生成的重要调节因子。使用硒缺乏(0.04 ppm)、硒适量(0.1 ppm)和硒补充(0.4 ppm)的 C57/BL6 小鼠,我们表明与硒补充和硒适量组相比,硒缺乏会导致贫血。在硒缺乏的小鼠中观察到血红蛋白、高铁血红蛋白、蛋白质羰基、脂质过氧化、海因茨体和红细胞渗透脆性增加。在硒缺乏的小鼠脾脏和肾脏以及在硒缺乏培养基中培养的原红细胞 G1E 细胞中,氧化应激的增加上调了叉头转录因子(FoxO3a)和缺氧诱导因子-(HIF)1α。在硒缺乏的小鼠中,下游靶基因 HIF1α 的表达显著增加,应激性红系祖细胞(集落形成单位-红细胞)扩张。尽管红细胞生成前体细胞增加,但网织红细胞减少表明红细胞分化途径存在缺陷。虽然硒缺乏导致活性 FoxO3a 的核内水平增加,但硒适量条件通过其结合伴侣 14-3-3βζ 逆转了这种效应,该伴侣在硒蛋白的氧化还原控制下进行核输出。总之,这些结果提供了深入了解适当的硒营养在通过减轻 FoxO3a 和 HIF1α 的氧化应激依赖性调节来影响红细胞前体细胞分化,从而调节红细胞内稳态的重要性。

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