Manganese transport and toxicity in polarized WIF-B hepatocytes

Khristy J Thompson1, Jennifer Hein1, Andrew Baez1

  • 1Department of Genetics and Complex Diseases, Harvard T. H. Chan School of Public Health, Harvard University , Boston, Massachusetts.

Insights

Hepatocytes clear manganese (Mn) via transporters like ZnT10, which imports Mn into vesicles for export into bile. This mechanism is unaffected by hepcidin but blocked by brefeldin A.

Area of Science:

  • Hepatology
  • Cell Biology
  • Toxicology

Background:

  • Manganese (Mn) toxicity is linked to nutritional, environmental, and genetic factors.
  • Hepatobiliary clearance is crucial for regulating blood Mn levels.
  • Understanding Mn transport in hepatocytes is key to addressing Mn toxicity.

Purpose of the Study:

  • To identify Mn transporters in polarized hepatocytes.
  • To develop an in vitro assay for Mn efflux from hepatocytes.
  • To investigate the role of Mn transporters in metal import and export.

Main Methods:

  • Utilized polarized WIF-B hepatocytoma cells.
  • Employed immunoblots and indirect immunofluorescence microscopy to detect and localize transporters.
  • Assessed Mn toxicity and efflux using MnCl2 exposure and washout experiments.
  • Investigated the effects of hepcidin and brefeldin A on Mn efflux.

Main Results:

  • Polarized WIF-B hepatocytes express Mn transporters ZIP8, ZnT10, ferroportin (Fpn), and ZIP14.
  • Fpn and ZIP14 localized to basolateral domains; ZnT10 and ZIP8 were in intracellular vesicles.
  • ZnT10-positive vesicles were near apical bile compartments.
  • Hepatocyte Mn efflux was resistant to hepcidin but inhibited by brefeldin A, suggesting a vesicle-mediated export process.

Conclusions:

  • Polarized hepatocytes possess specific Mn transporters with distinct cellular localizations.
  • A novel Mn efflux pathway involving ZnT10-mediated vesicular transport to the apical bile canalicular membrane is proposed.
  • This mechanism provides insight into hepatobiliary Mn clearance and potential Mn toxicity pathways.

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