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首页> 外文期刊>Biochemical Society Transactions >Regulation and function of Zip4, the acrodermatitis enteropathica gene.
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Regulation and function of Zip4, the acrodermatitis enteropathica gene.

机译:Zip4的调节和功能,肠炎肠炎基因。

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The SLC39A (solute carrier 39A) [ZIP (Zrt-Irt-like protein)] family consists of 14 members which are thought to control zinc uptake into the cytoplasm. Among these, ZIP4 is known to be particularly important for zinc homoeostasis. Mutations in this gene cause acrodermatitis enteropathica, a rare recessive-lethal human genetic disorder. In the present paper, our studies of the regulation and function of the mouse Zip4 gene are briefly reviewed. Mouse Zip4 is expressed at highest levels in tissues involved in absorption of dietary or maternal zinc, and the gene and protein are dynamically regulated by multiple post-transcriptional mechanisms in response to zinc availability. ZIP4 accumulates at the apical surface of enterocytes and endoderm cells when zinc is deficient, because of increased stability of the mRNA and stabilization of the protein. In contrast, when zinc is replenished, the mRNA is destabilized and the protein is internalized and degraded rapidly. The critical importance of ZIP4 in zinc homoeostasis is revealed in mice with targeted deletions of this gene. Homozygous Zip4-knockout embryos die during early morphogenesis and heterozygous offspring are significantly underrepresented and display an array of developmental defects, including exencephalia, anophthalmia and severe growth retardation. Mice heterozygous for Zip4-knockout are hypersensitive to zinc deficiency, which suggests that humans heterozygous for this gene may also be very sensitive to zinc deficiency.
机译:SLC39A(Solute Carrier 39a)[Zip(Zrt-pirt样蛋白)]家族由14个成员组成,这些成员被认为可以控制锌摄取到细胞质中。其中,Zip4对于锌均匀静脉曲张尤为重要。该基因中的突变引起肠炎肠炎肠炎,这是一种罕见的隐性致死性人类遗传疾病。在本文中,简要回顾了我们对小鼠Zip4基因调节和功能的研究。小鼠Zip4在与饮食或母锌吸收有关的组织中以最高水平表达,并且该基因和蛋白质受到多种转录后机制的动态调节,以响应锌的可用性。当锌不足时,Zip4在肠道细胞和内胚细胞的顶部表面积聚,因为mRNA的稳定性增加和蛋白质的稳定性。相反,当补充锌时,mRNA会不稳定,蛋白质被内化和迅速降解。在该基因的靶向缺失的小鼠中揭示了Zip4在锌均具有关键的重要性。在早期形态发生过程中,纯合子ZIP4-敲除胚胎死亡和杂合后代的代表大大不足,并且显示出一系列发育缺陷,包括外部脑,心血症,严重的生长迟缓。 Zip4敲除的杂合小鼠对锌缺乏症过敏,这表明该基因的人类杂合子也可能对锌缺乏症非常敏感。

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