Abstract

Zinc is an essential micronutrient, so it is important to elucidate the molecular mechanisms of zinc homeostasis, including the functional properties of zinc transporters. Mammalian zinc transporters are classified in two major families: the SLC30 (ZnT) family and the SLC39 family. The prevailing view is that SLC30 family transporters function to reduce cytosolic zinc concentration, either through efflux across the plasma membrane or through sequestration in intracellular compartments, and that SLC39 family transporters function in the opposite direction to increase cytosolic zinc concentration. We demonstrated that human ZnT5 variant B (ZnT5B (hZTL1)), an isoform expressed at the plasma membrane, operates in both the uptake and the efflux directions when expressed in Xenopus laevis oocytes. We measured increased activity of the zinc-responsive metallothionein 2a (MT2a) promoter when ZnT5b was co-expressed with an MT2a promoter-reporter plasmid construct in human intestinal Caco-2 cells, indicating increased total intracellular zinc concentration. Increased cytoplasmic zinc concentration mediated by ZnT5B, in the absence of effects on intracellular zinc sequestration by the Golgi apparatus or endoplasmic reticulum, was also confirmed by a dramatically enhanced signal from the zinc fluorophore Rhodzin-3 throughout the cytoplasm of Caco-2 cells overexpressing ZnT5B at the plasma membrane when compared with control cells. Our findings demonstrate clearly that, in addition to mediating zinc efflux, ZnT5B at the plasma membrane can function to increase cytoplasmic zinc concentration, thus indicating a need to reevaluate the current paradigm that SLC30 family zinc transporters operate exclusively to decrease cytosolic zinc concentration.

Highlights

  • To establish the location of the heterologously expressed ZnT5B in X. laevis oocytes, cells were injected with a C-terminal myc-tagged ZnT5B construct, and the protein was detected in sections of paraformaldehyde-fixed oocytes using a FITC-labeled anti-myc antibody

  • It is becoming widely accepted that members of the SLC30 family of mammalian zinc transporters function to reduce cytosolic zinc concentration by promoting zinc efflux from the cell or intracellular zinc sequestration

  • Expression of ZnT5B at the plasma membrane in X. laevis oocytes resulted in increased transmembrane fluxes of 65Zn2ϩ, consistent with the view that ZnT5B mediates zinc transport across the plasma membrane

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Summary

Introduction

Tel.: 44-191-2228347; Fax: 44-191-2226137; E-mail: r.a.valentine@ ncl.ac.uk Direct evidence for zinc transport function within the SLC30 family includes increased zinc efflux and uptake in baby hamster kidney cells expressing ZnT1 (5), 65Zn uptake into Golgienriched vesicles from Hela cells transfected with ZnT5 (8), and 65Zn uptake across the plasma membrane of Xenopus laevis oocytes expressing ZnT5 (9). These apparently different reported functional activities of ZnT5 may correspond with two splice variants of the SLC30A5 gene.

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