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首页> 外文期刊>The Journal of Nutrition >Zinc Transporters ZnT1 (Slc30a1), Zip8 (Slc39a8), and Zip10 (Slc39a10) in Mouse Red Blood Cells Are Differentially Regulated during Erythroid Development and by Dietary Zinc Deficiency1–3,
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Zinc Transporters ZnT1 (Slc30a1), Zip8 (Slc39a8), and Zip10 (Slc39a10) in Mouse Red Blood Cells Are Differentially Regulated during Erythroid Development and by Dietary Zinc Deficiency1–3,

机译:小鼠红细胞中的锌转运蛋白ZnT1(Slc30a1),Zip8(Slc39a8)和Zip10(Slc39a10)在类胡萝卜素发育过程中和饮食中锌缺乏症1-3的差异调节,

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摘要

Zinc is essential for normal erythroid cell functions and therefore intracellular zinc homeostasis during erythroid differentiation is tightly regulated. However, a characterization of zinc transporters in erythrocytes has not been conducted. The membrane fraction of mature mouse RBC was screened for zinc transporter expression using western analysis as a first step in the characterization process. ZnT1, Zip8, and Zip10 were detected among the 12 transporter proteins tested. We examined expression of these zinc transporters during erythropoietin (EPO)-induced differentiation of splenic erythroid progenitor cells into reticulocytes. Both Zip8 and Zip10 mRNA increased by 2–6 h after addition of EPO to the cells. In contrast, maximal RNA levels for the zinc transporter ZnT1 and erythroid -aminolevulinic acid synthase were only produced by 24 h after EPO. We confirmed these changes in transcript abundance by western analysis. Dietary zinc status influences zinc-dependent functions of RBC. To determine whether the identified zinc transporters respond to dietary zinc status, mice were fed a zinc-deficient or control diet. Incorporation of 65Zn into erythrocytes in vitro was significantly increased in cells from the zinc-deficient mice. Western analysis and densitometry revealed that erythrocyte Zip10 was upregulated and ZnT1 was downregulated in the zinc-depleted mice. Zip8 was not affected by restricted zinc intake. Collectively, these data suggest that the zinc transporters ZnT1, Zip8, and Zip10 are important for zinc homeostasis in erythrocytes and that ZnT1 and Zip10 respond to the dietary zinc supply.
机译:锌对于正常的类红细胞功能是必不可少的,因此在类红细胞分化过程中细胞内锌的稳态受到严格调节。然而,尚未进行红细胞中锌转运蛋白的表征。作为表征过程的第一步,使用蛋白质印迹分析筛选了成熟小鼠RBC的膜级分的锌转运蛋白表达。在测试的12种转运蛋白中检测到ZnT1,Zip8和Zip10。我们检查了这些锌转运蛋白在促红细胞生成素(EPO)诱导的脾红系祖细胞分化为网状细胞的过程中的表达。将EPO加入细胞后,Zip8和Zip10 mRNA均增加了2–6 h。相反,锌转运蛋白ZnT1和类胡萝卜素-氨基乙酰丙酸合酶的最大RNA水平仅在EPO后24小时产生。我们通过西方分析证实了转录本丰度的这些变化。饮食中的锌状态会影响RBC的锌依赖性功能。为了确定所鉴定的锌转运蛋白是否对饮食中的锌状态起反应,给小鼠饲喂锌缺乏或对照饮食。缺锌小鼠的细胞中,将65Zn掺入体外的红细胞显着增加。 Western分析和光密度测定法显示,缺锌小鼠中红细胞Zip10上调,而ZnT1下调。 Zip8不受锌摄入量限制的影响。总体而言,这些数据表明锌转运蛋白ZnT1,Zip8和Zip10对于红细胞中的锌稳态具有重要作用,并且ZnT1和Zip10对饮食中的锌供应有反应。

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