Peters Jennifer L, Dufner-Beattie Jodi, Xu Wenhao, Geiser Jim, Lahner Brett, Salt David E, Andrews Glen K
Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City, Kansas 66160-7421, USA.
Genesis. 2007 Jun;45(6):339-52. doi: 10.1002/dvg.20297.
Fourteen members of the Slc39a superfamily of metal ion uptake transporters have been identified in mice and humans, but the physiological functions of most remain obscure. Herein, we created mice with Zip2 (Slc39a2) genes in which the open reading frame was replaced with that of the enhanced green fluorescent protein (EGFP), to study temporal and spatial patterns of Zip2 gene expression and examine the physiological roles of this transporter. Expression of this gene was remarkably cell-type specific and developmentally regulated in pericentral hepatocytes, developing keratinocytes, and a subset of immature dendritic cells in the immune system. In addition, the Zip2 gene was transiently expressed in giant trophoblast cells in the placenta. Although the Zip2 gene was not essential under conditions of normal dietary zinc, it played an important role in adapting to dietary zinc deficiency during pregnancy, and in the homeostasis of iron in the liver as well as iron and calcium in developing embryos. These studies suggest that active expression of the Zip2 gene in these few specific cell types, aforementioned, plays a particularly important role during zinc deficiency. These studies further reveal novel interactions between zinc transporter function and the homeostasis of other essential metals.
在小鼠和人类中已鉴定出14种金属离子摄取转运体的Slc39a超家族成员,但大多数成员的生理功能仍不清楚。在此,我们构建了Zip2(Slc39a2)基因被增强型绿色荧光蛋白(EGFP)的开放阅读框取代的小鼠,以研究Zip2基因表达的时空模式,并研究该转运体的生理作用。该基因的表达在中央周围肝细胞、发育中的角质形成细胞以及免疫系统中一部分未成熟树突状细胞中具有显著的细胞类型特异性且受发育调控。此外,Zip2基因在胎盘中的巨大滋养层细胞中短暂表达。尽管在正常饮食锌条件下Zip2基因并非必需,但它在孕期适应饮食锌缺乏以及肝脏中铁的稳态以及发育中胚胎中铁和钙的稳态方面发挥着重要作用。这些研究表明,上述少数特定细胞类型中Zip2基因的活跃表达在锌缺乏期间起着特别重要的作用。这些研究进一步揭示了锌转运体功能与其他必需金属稳态之间的新相互作用。