Xiao Guiran, Wan Zhihui, Fan Qiangwang, Tang Xiaona, Zhou Bing
State Key Laboratory of Biomembrane and Membrane Biotechnology, School of Life Sciences, Tsinghua University, Beijing, China.
State Key Laboratory of Biomembrane and Membrane Biotechnology, School of Life Sciences, Tsinghua University, Beijing, China
Elife. 2014 Jul 8;3:e03191. doi: 10.7554/eLife.03191.
The intracellular iron transfer process is not well understood, and the identity of the iron transporter responsible for iron delivery to the secretory compartments remains elusive. In this study, we show Drosophila ZIP13 (Slc39a13), a presumed zinc importer, fulfills the iron effluxing role. Interfering with dZIP13 expression causes iron-rescuable iron absorption defect, simultaneous iron increase in the cytosol and decrease in the secretory compartments, failure of ferritin iron loading, and abnormal collagen secretion. dZIP13 expression in E. coli confers upon the host iron-dependent growth and iron resistance. Importantly, time-coursed transport assays using an iron isotope indicated a potent iron exporting activity of dZIP13. The identification of dZIP13 as an iron transporter suggests that the spondylocheiro dysplastic form of Ehlers-Danlos syndrome, in which hZIP13 is defective, is likely due to a failure of iron delivery to the secretory compartments. Our results also broaden our knowledge of the scope of defects from iron dyshomeostasis.
细胞内铁转运过程尚未得到充分理解,负责将铁输送到分泌区室的铁转运蛋白的身份仍然难以捉摸。在本研究中,我们发现果蝇ZIP13(Slc39a13),一种推测的锌导入蛋白,发挥着铁流出的作用。干扰dZIP13的表达会导致铁可挽救的铁吸收缺陷、胞质中铁同时增加而分泌区室中铁减少、铁蛋白铁负载失败以及胶原蛋白分泌异常。dZIP13在大肠杆菌中的表达赋予宿主铁依赖性生长和铁抗性。重要的是,使用铁同位素进行的时间进程运输分析表明dZIP13具有强大的铁输出活性。将dZIP13鉴定为铁转运蛋白表明,在hZIP13有缺陷的埃勒斯-当洛综合征的脊椎手发育不良形式中,可能是由于铁输送到分泌区室失败所致。我们的结果也拓宽了我们对铁稳态失调缺陷范围的认识。