1Dufner-Beattie J, Wang F, Kuo YM, et al. The acrodermatitis enteropathica gene ZIP4 encodes a tissue-specific, zinc-regulated zinc transporter in mice. J Biol Chem, 2003, 278:33474-33481.
2Kim BE, Wang F, Dufner-Beattie J, et al. Zn26+ -stimulated endocytosis of the mZIP4 zinc transporter regulates its location at the plasma membrane. J Biol Chem, 2004, 279:4523-4530.
3Dufner-Beattie J, Kuo YM, Gitschier J, et al. The adaptive response to dietary zinc in mice involves the differential cellular localization and zinc regulation of the zinc transporters ZIP4 and ZIPS. J Biol Chem,2004,279:49082-49090.
4Wang F, Kim BE, Dufner-Beattie J,et al. Acrodermatitis enteropathica mutations affect transport activity, localization and zinc-responsive trafficking of the mouse ZIP4 zinc transporter. Hum Mol Genet, 2004,13:563-571.
5Huang L, Gitschier J. A novel gene involved in zinc transport is deficient in the lethal milk mouse. Nat Genet, 1997,17:292-297.
6Bleck O, Ashton GH, Mallipeddi R, et al. Genomic localization, organization and amplification of the human zinc transporter protein gene, ZNT4, and exclusion as a candidate gene in different clinical variants of acrodermatitis enteropathica. Arch Dermatol Res, 2001,293:392-396.
7Kury S, Devilder MC, Avet-Loiseau H, et al. Expression pattern, genomic structure and evaluation of the human SLC30A4 gene as a candidate for acrodermatitis enteropathica. Hum Genet, 2001, 109:178-185.
8Nakano A, Nakano H, Hanada K, et al. ZNT4 gene is not responsible for acrodermatitis enteropathica in Japanese families. Hum Genet,2002, 110:201-202.
9Sandstrom B, Cederblad A, Lindblad BS, et al. Acrodermatitis enteropathica, zinc metabolism, copper status, and immune function. Arch Pediatr Adolesc Med, 1994, 148:980-985.
10Perafan-Riveros C, Franca LF, Alves AC,et al. Acrodermatitis enteropathica: case report and review of the literature. Pediatr Dermatol,2002, 19:426-431.