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首页> 外文期刊>American Journal of Physiology >Slc39a1 to 3 (subfamily II) Zip genes in mice have unique cell-specific functions during adaptation to zinc deficiency
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Slc39a1 to 3 (subfamily II) Zip genes in mice have unique cell-specific functions during adaptation to zinc deficiency

机译:小鼠中的Slc39a1至3(亚家族II)Zip基因在适应锌缺乏时具有独特的细胞特异性功能

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Subfamily II of the solute carrier (Slc)39a family contains three highly conserved members (ZIPs 1-3) that share a 12-amino acid signature sequence present in the putative fourth transmembrane domain and function as zinc transporters in transfected cells. The physiological significance of this genetic redundancy is unknown. Here we report that the complete elimination of all three of these Zip genes, by targeted mutagenesis and crossbreeding mice, causes no overt phenotypic effect. When mice were fed a zinc-adequate diet, several indicators of zinc status were indistinguishable between wild-type and triple-knockout mice, including embryonic morphogenesis and growth, alkaline phosphataseactivity in the embryo, ZIP4 protein in the visceral yolk sac, and initial rates (30 min) of accumulation/retention of ~(67)Zn in liver and pancreas. When mice were fed a zinc-deficient diet, embryonic membrane-bound alkaline phosphatase activity was reduced to a much greater extent, and 80% of the embryos of the triple-knockout mice developed abnormally compared with 12% of the embryos of wild-type mice. During zinc deficiency, the accumulation/retention (3 h) of ~(67)Zn in the liver and pancreas of weanlings was significantly impaired in the triple-knockout mice compared with wild-type mice. Thus none of these three mammalian Zip genes apparently plays a critical role in zinc homeostasis when zinc is replete, but they play important, noncompensatory roles when this metal is deficient.
机译:溶质载体(Slc)39a家族的亚家族II包含三个高度保守的成员(ZIPs 1-3),它​​们共享一个在假定的第四个跨膜结构域中存在的12个氨基酸的签名序列,并在转染的细胞中充当锌转运蛋白。这种遗传冗余的生理意义尚不清楚。在这里,我们报告通过定向诱变和杂交小鼠完全消除所有这三个Zip基因,不会引起明显的表型效应。当给小鼠饲喂锌充足的饮食时,野生型和三敲除小鼠的锌状态的几个指标是无法区分的,包括胚胎的形态和生长,胚胎中的碱性磷酸酶活性,内脏卵黄囊中的ZIP4蛋白以及初始速率。 (30分钟)肝脏和胰腺中〜(67)Zn的积累/保留。当给小鼠饲喂缺锌饮食时,与胚胎膜结合的碱性磷酸酶活性会大大降低,三重敲除小鼠的胚胎发育异常的比例为80%(野生型)老鼠。在缺锌期间,与野生型小鼠相比,三联敲除小鼠的断奶仔猪的肝脏和胰脏中〜(67)Zn的积累/保留(3 h)明显受损。因此,当锌充足时,这三个哺乳动物的Zip基因显然都没有在锌稳态中起关键作用,但当这种金属缺乏时,它们却起着重要的非补偿作用。

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