4.5 Article

Zinc transporter-2 (ZnT2) variants are localized to distinct subcellular compartments and functionally transport zinc

Journal

BIOCHEMICAL JOURNAL
Volume 422, Issue -, Pages 43-52

Publisher

PORTLAND PRESS LTD
DOI: 10.1042/BJ20081189

Keywords

exocytotic vesicles; lactation; mammary gland; plasma membrane; zinc transporters; ZnT2 variants

Funding

  1. University of California Davis
  2. Pennsylvania State University
  3. NIH (National Institues for Health) [HD058614]

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ZnT2 (zinc transporter-2) expression is restricted to tissues with unique zinc requirements such as mammary and prostate glands. We previously determined that ZnT2 plays a major role in zinc export from mammary glands, as women with a mutation in the gene encoding ZnT2 (SLC30A2) had an similar to 75% reduction in milk zinc concentration. Two distinct human ZnT2 isoforms (similar to 42 and 35 kDa) are predicted to result from alternative splicing of SLC30A2. We examined the localization and function of each ZnT2 isoform, in cells generated to express ZnT2-HA (haemagglutinin) fusion proteins. The 42 kDa isoform was localized primarily to the endosomal/secretory compartment and overexpression resulted in increased zinc vesicularization. In contrast, the 35 kDa isoform is associated with the plasma membrane. Importantly, zinc transport was higher in cells over-expressing each isoform, indicating that both proteins are functional. Endogenous expression of the secretory vesicle-associated ZnT2 isoform predominates in mammary cells and expression is higher in secreting cells, whereas the smaller isoform plays a minor role in zinc export, directly reflecting the secretory function of the mammary gland. Together our data shed further light on the complex integration Of Cellular zinc transport mechanisms, which may be facilitated by Multiple isol'ornis of' specific zinc transporters with unique cellular functions.

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