Functional properties of multiple isoforms of human divalent metal-ion transporter 1 (DMT1)

被引:139
作者
Mackenzie, Bryan
Takanaga, Hitomi
Hubert, Nadia
Rolfs, Andreas
Hediger, Matthias A.
机构
[1] Brigham & Womens Hosp, Membrane Biol Program, Boston, MA 02115 USA
[2] Brigham & Womens Hosp, Div Renal, Dept Med, Boston, MA 02115 USA
[3] Harvard Univ, Sch Med, Boston, MA 02115 USA
[4] Univ Cincinnati, Coll Med, Dept Cellular & Mol Physiol, Cincinnati, OH 45267 USA
[5] European Mol Biol Lab, Gene Express Programme, D-69117 Heidelberg, Germany
关键词
anaemia; divalent metal-ion transporter 1 (DMT1); iron absorption; natural-resistance; associated macrophage protein 2 (Nramp2); solute carrier family 11 member 2 (SLC11A2);
D O I
10.1042/BJ20061290
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
DMTI (divalent metal-ion transporter 1) is a widely expressed metal-ion transporter that is vital for intestinal iron absorption and iron utilization by most cell types throughout the body, including erythroid precursors. Mutations in DMT1 cause severe microcytic anaemia in animal models. Four DMT1 isoforms that differ in their N- and C-termini arise from mRNA transcripts that vary both at their 5'-ends (starting in exon 1A or exon 1B) and at their 3'-ends giving rise to mRNAs containing (+) or lacking (-) the 3'-IRE (iron-responsive element) and resulting in altered C-terminal coding sequences. To determine whether these variations result in functional differences between isoforms, we explored the functional properties of each isoform using the voltage clamp and radiotracer assays in cRNA-injected Xenopus oocytes. 1A/IRE(+)-DMT1 mediated Fe2+-evoked currents that were saturable (K-0.5(Fe) approximate to 1-2 mu M) temperature-dependent (Q(10) approximate to 2), HI-dependent (K-0.5(H) approximate to 1 mu M) and voltage-dependent. 1A/0.5 IRE(+)-DMT1 exhibited the provisional substrate profile (ranked on currents) Cd2+, Co2+, Fe2+, Mn2+ > Ni2+, V3+ >> Ph2+. Zn2+ also evoked large currents; however, the zinc-evoked current was accounted for by H+ and Cl- conductances and was not associated with significant Zn2+ transport. 1B/IRE(+)-DMT1 exhibited the same substrate profile, Fe2+ affinity and dependence on the H+ electrochemical gradient. Each isoform mediated Fe-55(2+) uptake and Fe2+-evoked currents at low extracellular pH. Whereas iron transport activity varied markedly between the four isoforrns, the activity for each correlated with the density of anti-DMT1 immumostaining in the plasma membrane, and the turnover rate of the Fe2+ transport cycle did not differ between isoforms. Therefore all four isoforms of human DMT1 function as metal-ion transporters of equivalent efficiency. Our results reveal that the Nand C-terminal sequence variations among the DMT1 isoforms do not alter DMT1 functional properties. We therefore propose that these variations serve as tissue-specific signals or cues to direct DMT1 to the appropriate subcellular compartments (e.g. in erythroid cells) or the plasma membrane (e.g. in intestine).
引用
收藏
页码:59 / 69
页数:11
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