Chen Huijun, Attieh Zouhair K, Syed Basharut A, Kuo Yien-Ming, Stevens Valerie, Fuqua Brie K, Andersen Henriette S, Naylor Claire E, Evans Robert W, Gambling Lorraine, Danzeisen Ruth, Bacouri-Haidar Mhenia, Usta Julnar, Vulpe Chris D, McArdle Harry J
Department of Nutritional Science and Toxicology, University of California, Berkeley, CA 94720, USA.
J Nutr. 2010 Oct;140(10):1728-35. doi: 10.3945/jn.109.117531. Epub 2010 Aug 4.
We previously detected a membrane-bound, copper-containing oxidase that may be involved in iron efflux in BeWo cells, a human placental cell line. We have now identified a gene encoding a predicted multicopper ferroxidase (MCF) with a putative C-terminal membrane-spanning sequence and high sequence identity to hephaestin (Heph) and ceruloplasmin (Cp), the other known vertebrate MCF. Molecular modeling revealed conservation of all type I, II, and III copper-binding sites as well as a putative iron-binding site. Protein expression was observed in multiple diverse mouse tissues, including placenta and mammary gland, and the expression pattern was distinct from that of Cp and Heph. The protein possessed ferroxidase activity, and protein levels decreased in cellular copper deficiency. Knockdown with small interfering RNA in BeWo cells indicates that this gene represents the previously detected oxidase. We propose calling this new member of the MCF family "zyklopen."
我们之前在人胎盘细胞系BeWo细胞中检测到一种可能参与铁外流的膜结合含铜氧化酶。我们现已鉴定出一个编码预测的多铜铁氧化酶(MCF)的基因,该基因具有推定的C端跨膜序列,并且与另一种已知的脊椎动物MCF——高铁转运蛋白(Heph)和铜蓝蛋白(Cp)具有高度的序列同一性。分子建模显示所有I型、II型和III型铜结合位点以及一个推定的铁结合位点均保守。在包括胎盘和乳腺在内的多种不同小鼠组织中观察到了蛋白质表达,并且其表达模式与Cp和Heph不同。该蛋白质具有铁氧化酶活性,并且在细胞铜缺乏时蛋白质水平降低。在BeWo细胞中用小干扰RNA敲低表明该基因代表之前检测到的氧化酶。我们建议将MCF家族的这个新成员命名为“zyklopen”。