Cargando…
The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance
The metal ion transporter ZIP8 (SLC39A8) mediates cellular uptake of vital divalent metal ions. Genome-wide association studies (GWAS) showed that the single-nucleotide polymorphism (SNP) variant A391T (rs13107325) is associated with numerous human traits, including reduced arterial blood pressure,...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9240775/ https://www.ncbi.nlm.nih.gov/pubmed/35784893 http://dx.doi.org/10.3389/fphys.2022.912277 |
_version_ | 1784737643854036992 |
---|---|
author | Verouti, Sophia N. Pujol-Giménez, Jonai Bermudez-Lekerika, Paola Scherler, Laeticia Bhardwaj, Rajesh Thomas, Aurélien Lenglet, Sébastien Siegrist, Mark Hofstetter, Willy Fuster, Daniel G. Hediger, Matthias A. Escher, Geneviève Vogt, Bruno |
author_facet | Verouti, Sophia N. Pujol-Giménez, Jonai Bermudez-Lekerika, Paola Scherler, Laeticia Bhardwaj, Rajesh Thomas, Aurélien Lenglet, Sébastien Siegrist, Mark Hofstetter, Willy Fuster, Daniel G. Hediger, Matthias A. Escher, Geneviève Vogt, Bruno |
author_sort | Verouti, Sophia N. |
collection | PubMed |
description | The metal ion transporter ZIP8 (SLC39A8) mediates cellular uptake of vital divalent metal ions. Genome-wide association studies (GWAS) showed that the single-nucleotide polymorphism (SNP) variant A391T (rs13107325) is associated with numerous human traits, including reduced arterial blood pressure, increased body mass index and hyperlipidemia. We analyzed in vitro the transport properties of mutant ZIP8 A391T and investigated in vivo in mice the physiological effects of this polymorphism. In vitro, the intrinsic transport properties of mutant ZIP8 were similar to those of wild type ZIP8, but cellular uptake of zinc, cadmium and iron was attenuated due to reduced ZIP8 plasma membrane expression. We then generated the ZIP8 A393T mice (ZIP8KI) that carry the corresponding polymorphism and characterized their phenotype. We observed lower protein expression in lung and kidney membrane extracts in ZIP8KI mice. The ZIP8KI mice exhibited striking changes in metal ion composition of the tissues, including cobalt, palladium, mercury and platinum. In agreement with GWAS, ZIP8KI mice showed reduced arterial blood pressure. Body weight and plasma lipid composition remained unchanged, although these features were reported to be increased in GWAS. ZIP8KI mice also exhibited remarkable insulin resistance and were protected from elevated blood glucose when challenged by dietary sucrose supplementation. We showed that increased hepatic insulin receptor expression and decreased ZnT8 (slc30a8) metal ion transporter mRNA expression are associated with this phenotypic change. In conclusion, our data reveal that ZIP8 plays an important role in blood pressure regulation and glucose homeostasis. |
format | Online Article Text |
id | pubmed-9240775 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-92407752022-06-30 The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance Verouti, Sophia N. Pujol-Giménez, Jonai Bermudez-Lekerika, Paola Scherler, Laeticia Bhardwaj, Rajesh Thomas, Aurélien Lenglet, Sébastien Siegrist, Mark Hofstetter, Willy Fuster, Daniel G. Hediger, Matthias A. Escher, Geneviève Vogt, Bruno Front Physiol Physiology The metal ion transporter ZIP8 (SLC39A8) mediates cellular uptake of vital divalent metal ions. Genome-wide association studies (GWAS) showed that the single-nucleotide polymorphism (SNP) variant A391T (rs13107325) is associated with numerous human traits, including reduced arterial blood pressure, increased body mass index and hyperlipidemia. We analyzed in vitro the transport properties of mutant ZIP8 A391T and investigated in vivo in mice the physiological effects of this polymorphism. In vitro, the intrinsic transport properties of mutant ZIP8 were similar to those of wild type ZIP8, but cellular uptake of zinc, cadmium and iron was attenuated due to reduced ZIP8 plasma membrane expression. We then generated the ZIP8 A393T mice (ZIP8KI) that carry the corresponding polymorphism and characterized their phenotype. We observed lower protein expression in lung and kidney membrane extracts in ZIP8KI mice. The ZIP8KI mice exhibited striking changes in metal ion composition of the tissues, including cobalt, palladium, mercury and platinum. In agreement with GWAS, ZIP8KI mice showed reduced arterial blood pressure. Body weight and plasma lipid composition remained unchanged, although these features were reported to be increased in GWAS. ZIP8KI mice also exhibited remarkable insulin resistance and were protected from elevated blood glucose when challenged by dietary sucrose supplementation. We showed that increased hepatic insulin receptor expression and decreased ZnT8 (slc30a8) metal ion transporter mRNA expression are associated with this phenotypic change. In conclusion, our data reveal that ZIP8 plays an important role in blood pressure regulation and glucose homeostasis. Frontiers Media S.A. 2022-06-15 /pmc/articles/PMC9240775/ /pubmed/35784893 http://dx.doi.org/10.3389/fphys.2022.912277 Text en Copyright © 2022 Verouti, Pujol-Giménez, Bermudez-Lekerika, Scherler, Bhardwaj, Thomas, Lenglet, Siegrist, Hofstetter, Fuster, Hediger, Escher and Vogt. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Physiology Verouti, Sophia N. Pujol-Giménez, Jonai Bermudez-Lekerika, Paola Scherler, Laeticia Bhardwaj, Rajesh Thomas, Aurélien Lenglet, Sébastien Siegrist, Mark Hofstetter, Willy Fuster, Daniel G. Hediger, Matthias A. Escher, Geneviève Vogt, Bruno The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance |
title | The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance |
title_full | The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance |
title_fullStr | The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance |
title_full_unstemmed | The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance |
title_short | The Allelic Variant A391T of Metal Ion Transporter ZIP8 (SLC39A8) Leads to Hypotension and Enhanced Insulin Resistance |
title_sort | allelic variant a391t of metal ion transporter zip8 (slc39a8) leads to hypotension and enhanced insulin resistance |
topic | Physiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9240775/ https://www.ncbi.nlm.nih.gov/pubmed/35784893 http://dx.doi.org/10.3389/fphys.2022.912277 |
work_keys_str_mv | AT veroutisophian theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT pujolgimenezjonai theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT bermudezlekerikapaola theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT scherlerlaeticia theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT bhardwajrajesh theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT thomasaurelien theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT lengletsebastien theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT siegristmark theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT hofstetterwilly theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT fusterdanielg theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT hedigermatthiasa theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT eschergenevieve theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT vogtbruno theallelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT veroutisophian allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT pujolgimenezjonai allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT bermudezlekerikapaola allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT scherlerlaeticia allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT bhardwajrajesh allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT thomasaurelien allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT lengletsebastien allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT siegristmark allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT hofstetterwilly allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT fusterdanielg allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT hedigermatthiasa allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT eschergenevieve allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance AT vogtbruno allelicvarianta391tofmetaliontransporterzip8slc39a8leadstohypotensionandenhancedinsulinresistance |