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S-Nitrosylation of Divalent Metal Transporter 1 Enhances Iron Uptake to Mediate Loss of Dopaminergic Neurons and Motoric Deficit.

Authors :
Chao Liu
Cheng-Wu Zhang
Shun Qiang Lo
Seok Ting Ang
Katherine Chee Meng Chew
Dejie Yu
Bing Han Chai
Bobby Tan
Fai Tsang
Yee Kit Tai
Bryce Wei Quan Tan
Mui Cheng Liang
Hwee Tong Tan
Jia Ying Tang
Mitchell Kim Peng Lai
John Jia En Chua
Maxey Ching Ming Chung
Khanna, Sanjay
Kah-Leong Lim
Tuck Wah Soong
Source :
Journal of Neuroscience; 9/26/2018, Vol. 38 Issue 39, p8364-8377, 14p
Publication Year :
2018

Abstract

Elevated iron deposition has been reported in Parkinson's disease (PD). However, the route of iron uptake leading to high deposition in the substantia nigra is unresolved. Here, we show a mechanism in enhanced Fe<superscript>2+</superscript> 1 uptake via S-nitrosylation of divalent metal transporter 1 (DMT1). While DMT1 could be S-nitrosylated by exogenous nitric oxide donors, in human PD brains, endogenously S-nitrosylated DMT1 was detected in postmortem substantia nigra. Patch-damp electrophysiological recordings and iron uptake assays confirmed increased Mn<superscript>2+ </superscript>or Fe<superscript>2+</superscript> uptake through S-nitrosylated DMT1. We identified two major S-nitrosylation sites, C23 and C540, by mass spectrometry, and DMT1 C23A or C540A substitutions abolished nitric oxide (NO)- mediated DMT1 current increase. To evaluate in vivo significance, lipopolysaccharide (LPS) was stereotaxically injected into the substantia nigra of female and male mice to induce inflammation and production of NO. The intranigral LPS injection resulted in corresponding increase in Fe<superscript>2+</superscript> deposition, JNK activation, dopaminergic neuronal loss and deficit in motoric activity, and these were rescued by the NO synthase inhibitor l-NAME or by the DMTl-selective blocker ebselen. Lentiviral knockdown of DMT1 abolished LPS-induced dopaminergic neuron loss. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
38
Issue :
39
Database :
Complementary Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
132117599
Full Text :
https://doi.org/10.1523/JNEUROSCI.3262-17.2018