Dufner-Beattie Jodi, Weaver Benjamin P, Geiser Jim, Bilgen Mehmet, Larson Melissa, Xu Wenhao, Andrews Glen K
Department of Biochemistry and Molecular Biology, University of Virginia School of Medicine, PO Box 800734, Charlottesville, VA 22908, USA.
Hum Mol Genet. 2007 Jun 15;16(12):1391-9. doi: 10.1093/hmg/ddm088. Epub 2007 May 4.
The human Zip4 gene (Slc39a4) is mutated in the rare recessive genetic disorder of zinc metabolism acrodermatitis enteropathica, but the physiological functions of Zip4 are not well understood. Herein we demonstrate that homozygous Zip4-knockout mouse embryos die during early morphogenesis and heterozygous offspring are significantly underrepresented. At mid-gestation, an array of developmental defects including exencephalia, anophthalmia and severe growth retardation were noted in heterozygous embryos, and at weaning, many (63/280) heterozygous offspring were hydrocephalic, growth retarded and missing one or both eyes. Maternal dietary zinc deficiency during pregnancy exacerbated these effects, whereas zinc excess ameliorated these effects and protected embryonic development of heterozygotes but failed to rescue homozygous embryos. Heterozygous Zip4 embryos were not underrepresented in litters from wild-type mothers, but were approximately 10 times more likely to develop abnormally than were their wild-type littermates during zinc deficiency. Thus, both embryonic and maternal Zip4 gene expressions are critical for proper zinc homeostasis. These studies suggest that heterozygous mutations in the acrodermatitis gene Zip4 may be associated with a wider range of developmental defects than was previously appreciated, particularly when dietary zinc is limiting.
人类Zip4基因(Slc39a4)在罕见的锌代谢隐性遗传病肠病性肢端皮炎中发生突变,但Zip4的生理功能尚未完全了解。在此我们证明,纯合Zip4基因敲除小鼠胚胎在早期形态发生过程中死亡,杂合子后代数量明显不足。在妊娠中期,杂合子胚胎出现一系列发育缺陷,包括露脑畸形、无眼畸形和严重生长迟缓,断奶时,许多(63/280)杂合子后代出现脑积水、生长迟缓且一只或两只眼睛缺失。孕期母体饮食锌缺乏会加剧这些影响,而锌过量则可改善这些影响并保护杂合子的胚胎发育,但无法挽救纯合子胚胎。野生型母亲所产仔中杂合Zip4胚胎数量并不少,但在锌缺乏时,其发育异常的可能性比野生型同窝仔高约10倍。因此,胚胎和母体Zip4基因表达对于维持适当的锌稳态至关重要。这些研究表明,肠病性肢端皮炎基因Zip4的杂合突变可能与比之前认识到的更广泛的发育缺陷有关,尤其是在饮食锌有限的情况下。