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Divalent metal transporter 1 regulates iron-mediated ROS and pancreatic ß cell fate in response to cytokines

Authors :
Hansen, Jakob Bondo
Tonnesen, Morten Fog
Madsen, Andreas Nygaard
Hagedorn, Peter
Friberg, Josefine
Grunnet, Lars Groth
Heller, R Scott
Nielsen, Anja Østergren
Størling, Joachim
Baeyens, Luc
Anker-Kitai, Leeat
Qvortrup, Klaus
Bouwens, Luc
Efrat, Shimon
Aalund, Mogens
Andrews, Nancy C
Billestrup, Nils
Karlsen, Allan E
Holst, Birgitte
Pociot, Flemming
Mandrup-Poulsen, Thomas
Hansen, Jakob Bondo
Tonnesen, Morten Fog
Madsen, Andreas Nygaard
Hagedorn, Peter
Friberg, Josefine
Grunnet, Lars Groth
Heller, R Scott
Nielsen, Anja Østergren
Størling, Joachim
Baeyens, Luc
Anker-Kitai, Leeat
Qvortrup, Klaus
Bouwens, Luc
Efrat, Shimon
Aalund, Mogens
Andrews, Nancy C
Billestrup, Nils
Karlsen, Allan E
Holst, Birgitte
Pociot, Flemming
Mandrup-Poulsen, Thomas
Source :
Hansen , J B , Tonnesen , M F , Madsen , A N , Hagedorn , P , Friberg , J , Grunnet , L G , Heller , R S , Nielsen , A Ø , Størling , J , Baeyens , L , Anker-Kitai , L , Qvortrup , K , Bouwens , L , Efrat , S , Aalund , M , Andrews , N C , Billestrup , N , Karlsen , A E , Holst , B , Pociot , F & Mandrup-Poulsen , T 2012 , ' Divalent metal transporter 1 regulates iron-mediated ROS and pancreatic ß cell fate in response to cytokines ' , Cell Metabolism , vol. 16 , no. 4 , pp. 449-61 .
Publication Year :
2012

Abstract

Reactive oxygen species (ROS) contribute to target-cell damage in inflammatory and iron-overload diseases. Little is known about iron transport regulation during inflammatory attack. Through a combination of in vitro and in vivo studies, we show that the proinflammatory cytokine IL-1ß induces divalent metal transporter 1 (DMT1) expression correlating with increased ß cell iron content and ROS production. Iron chelation and siRNA and genetic knockdown of DMT1 expression reduce cytokine-induced ROS formation and cell death. Glucose-stimulated insulin secretion in the absence of cytokines in Dmt1 knockout islets is defective, highlighting a physiological role of iron and ROS in the regulation of insulin secretion. Dmt1 knockout mice are protected against multiple low-dose streptozotocin and high-fat diet-induced glucose intolerance, models of type 1 and type 2 diabetes, respectively. Thus, ß cells become prone to ROS-mediated inflammatory damage via aberrant cellular iron metabolism, a finding with potential general cellular implications.

Details

Database :
OAIster
Journal :
Hansen , J B , Tonnesen , M F , Madsen , A N , Hagedorn , P , Friberg , J , Grunnet , L G , Heller , R S , Nielsen , A Ø , Størling , J , Baeyens , L , Anker-Kitai , L , Qvortrup , K , Bouwens , L , Efrat , S , Aalund , M , Andrews , N C , Billestrup , N , Karlsen , A E , Holst , B , Pociot , F & Mandrup-Poulsen , T 2012 , ' Divalent metal transporter 1 regulates iron-mediated ROS and pancreatic ß cell fate in response to cytokines ' , Cell Metabolism , vol. 16 , no. 4 , pp. 449-61 .
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1322625563
Document Type :
Electronic Resource