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Generation and Characterization of Mice Lacking the Zinc Uptake Transporter ZIP3

机译:缺乏锌吸收转运蛋白ZIP3的小鼠的产生和表征

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The mouse ZIP3 (SLC39A3) gene encodes an eight-transmembrane-domain protein that has been conserved in mammals and can function to transport zinc. To analyze the expression of ZIP3 in the early embryo and neonate and to determine its in vivo function, we generated ZIP3 null mice in which the ZIP3 open reading frame was replaced with that of the enhanced green fluorescent protein (EGFP) reporter. EGFP fluorescence revealed that ZIP3 was expressed in the inner cell mass of the blastocyst and later during embryonic development in many tissues. Elevated expression was apparent in the embryonic brain and neurotube and neonatal gonads. Homozygous knockout mice were viable and fertile and under normal growth conditions exhibited no obvious phenotypic abnormalities. Deletion of ZIP3 did not alter zinc homeostasis at the molecular level as assessed by essential metal levels and the expression of zinc-responsive genes. In knockout mice stressed with a zinc-deficient diet during pregnancy or at weaning, a subtle increase in the sensitivity to abnormal morphogenesis of the embryo and to depletion of thymic pre-T cells, respectively, was noted. These results suggest that this protein plays an ancillary role in zinc homeostasis in mice.
机译:小鼠 ZIP3 (SLC39A3)基因编码一个八跨膜结构域蛋白,该蛋白在哺乳动物中已经保存下来,可以起运输锌的作用。为了分析 ZIP3 在早期胚胎和新生儿中的表达并确定其体内功能,我们生成了 ZIP3 空小鼠,其中 ZIP3 开放阅读框被增强的绿色荧光蛋白(EGFP)报告基因所取代。 EGFP荧光显示 ZIP3 在胚泡的内部细胞团中表达,并随后在许多组织的胚胎发育过程中表达。在胚胎脑,神经管和新生儿性腺中表达明显升高。纯合敲除小鼠是活的和可育的,并且在正常的生长条件下没有表现出明显的表型异常。通过必需金属水平和锌反应性基因的表达评估,删除 ZIP3 不会在分子水平上改变锌稳态。在怀孕期间或断奶时饮食缺乏锌的基因敲除小鼠中,注意到对胚胎异常形态发生和胸腺前T细胞耗竭的敏感性分别略有增加。这些结果表明,该蛋白在小鼠体内锌稳态中起辅助作用。

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