Cargando…

Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)

ZIP14 (slc39A14) is a zinc transporter induced in response to pro-inflammatory stimuli. ZIP14 induction accompanies the reduction in serum zinc (hypozincemia) of acute inflammation. ZIP14 can transport Zn(2+) and non-transferrin-bound Fe(2+) in vitro. Using a Zip14(−/−) mouse model we demonstrated t...

Descripción completa

Detalles Bibliográficos
Autores principales: Beker Aydemir, Tolunay, Chang, Shou-Mei, Guthrie, Gregory J., Maki, Alyssa B., Ryu, Moon-Suhn, Karabiyik, Afife, Cousins, Robert J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3480510/
https://www.ncbi.nlm.nih.gov/pubmed/23110240
http://dx.doi.org/10.1371/journal.pone.0048679
_version_ 1782247580589096960
author Beker Aydemir, Tolunay
Chang, Shou-Mei
Guthrie, Gregory J.
Maki, Alyssa B.
Ryu, Moon-Suhn
Karabiyik, Afife
Cousins, Robert J.
author_facet Beker Aydemir, Tolunay
Chang, Shou-Mei
Guthrie, Gregory J.
Maki, Alyssa B.
Ryu, Moon-Suhn
Karabiyik, Afife
Cousins, Robert J.
author_sort Beker Aydemir, Tolunay
collection PubMed
description ZIP14 (slc39A14) is a zinc transporter induced in response to pro-inflammatory stimuli. ZIP14 induction accompanies the reduction in serum zinc (hypozincemia) of acute inflammation. ZIP14 can transport Zn(2+) and non-transferrin-bound Fe(2+) in vitro. Using a Zip14(−/−) mouse model we demonstrated that ZIP14 was essential for control of phosphatase PTP1B activity and phosphorylation of c-Met during liver regeneration. In the current studies, a global screening of ZIP transporter gene expression in response to LPS-induced endotoxemia was conducted. Following LPS, Zip14 was the most highly up-regulated Zip transcript in liver, but also in white adipose tissue and muscle. Using ZIP14(−/−) mice we show that ZIP14 contributes to zinc absorption from the gastrointestinal tract directly or indirectly as zinc absorption was decreased in the KOs. In contrast, Zip14(−/−) mice absorbed more iron. The Zip14 KO mice did not exhibit hypozincemia following LPS, but do have hypoferremia. Livers of Zip14−/− mice had increased transcript abundance for hepcidin, divalent metal transporter-1, ferritin and transferrin receptor-1 and greater accumulation of iron. The Zip14(−/−) phenotype included greater body fat, hypoglycemia and higher insulin levels, as well as increased liver glucose and greater phosphorylation of the insulin receptor and increased GLUT2, SREBP-1c and FASN expression. The Zip14 KO mice exhibited decreased circulating IL-6 with increased hepatic SOCS-3 following LPS, suggesting SOCS-3 inhibited insulin signaling which produced the hypoglycemia in this genotype. The results are consistent with ZIP14 ablation yielding abnormal labile zinc pools which lead to increased SOCS-3 production through G-coupled receptor activation and increased cAMP production as well as signaled by increased pSTAT3 via the IL-6 receptor, which inhibits IRS 1/2 phosphorylation. Our data show the role of ZIP14 in the hepatocyte is multi-functional since zinc and iron trafficking are altered in the Zip14(−/−) mice and their phenotype shows defects in glucose homeostasis.
format Online
Article
Text
id pubmed-3480510
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34805102012-10-29 Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia) Beker Aydemir, Tolunay Chang, Shou-Mei Guthrie, Gregory J. Maki, Alyssa B. Ryu, Moon-Suhn Karabiyik, Afife Cousins, Robert J. PLoS One Research Article ZIP14 (slc39A14) is a zinc transporter induced in response to pro-inflammatory stimuli. ZIP14 induction accompanies the reduction in serum zinc (hypozincemia) of acute inflammation. ZIP14 can transport Zn(2+) and non-transferrin-bound Fe(2+) in vitro. Using a Zip14(−/−) mouse model we demonstrated that ZIP14 was essential for control of phosphatase PTP1B activity and phosphorylation of c-Met during liver regeneration. In the current studies, a global screening of ZIP transporter gene expression in response to LPS-induced endotoxemia was conducted. Following LPS, Zip14 was the most highly up-regulated Zip transcript in liver, but also in white adipose tissue and muscle. Using ZIP14(−/−) mice we show that ZIP14 contributes to zinc absorption from the gastrointestinal tract directly or indirectly as zinc absorption was decreased in the KOs. In contrast, Zip14(−/−) mice absorbed more iron. The Zip14 KO mice did not exhibit hypozincemia following LPS, but do have hypoferremia. Livers of Zip14−/− mice had increased transcript abundance for hepcidin, divalent metal transporter-1, ferritin and transferrin receptor-1 and greater accumulation of iron. The Zip14(−/−) phenotype included greater body fat, hypoglycemia and higher insulin levels, as well as increased liver glucose and greater phosphorylation of the insulin receptor and increased GLUT2, SREBP-1c and FASN expression. The Zip14 KO mice exhibited decreased circulating IL-6 with increased hepatic SOCS-3 following LPS, suggesting SOCS-3 inhibited insulin signaling which produced the hypoglycemia in this genotype. The results are consistent with ZIP14 ablation yielding abnormal labile zinc pools which lead to increased SOCS-3 production through G-coupled receptor activation and increased cAMP production as well as signaled by increased pSTAT3 via the IL-6 receptor, which inhibits IRS 1/2 phosphorylation. Our data show the role of ZIP14 in the hepatocyte is multi-functional since zinc and iron trafficking are altered in the Zip14(−/−) mice and their phenotype shows defects in glucose homeostasis. Public Library of Science 2012-10-24 /pmc/articles/PMC3480510/ /pubmed/23110240 http://dx.doi.org/10.1371/journal.pone.0048679 Text en © 2012 Beker Aydemir et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Beker Aydemir, Tolunay
Chang, Shou-Mei
Guthrie, Gregory J.
Maki, Alyssa B.
Ryu, Moon-Suhn
Karabiyik, Afife
Cousins, Robert J.
Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)
title Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)
title_full Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)
title_fullStr Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)
title_full_unstemmed Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)
title_short Zinc Transporter ZIP14 Functions in Hepatic Zinc, Iron and Glucose Homeostasis during the Innate Immune Response (Endotoxemia)
title_sort zinc transporter zip14 functions in hepatic zinc, iron and glucose homeostasis during the innate immune response (endotoxemia)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3480510/
https://www.ncbi.nlm.nih.gov/pubmed/23110240
http://dx.doi.org/10.1371/journal.pone.0048679
work_keys_str_mv AT bekeraydemirtolunay zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia
AT changshoumei zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia
AT guthriegregoryj zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia
AT makialyssab zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia
AT ryumoonsuhn zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia
AT karabiyikafife zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia
AT cousinsrobertj zinctransporterzip14functionsinhepaticzincironandglucosehomeostasisduringtheinnateimmuneresponseendotoxemia