Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease
Oxidative stress is one of the major characteristics in Alzheimer’s disease, and converging evidence indicates that cysteine S-nitrosylation might be related in AD pathology. My results demonstrated exogenous S-nitrosoglutathione was able to S-nitrosylate vAChT, vMAT2, vGluT1 and vGluT2. S-nitrosyla...
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ndltd-MANITOBA-oai-mspace.lib.umanitoba.ca-1993-303162015-05-21T03:50:57Z Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease Wang, Ying Wang, Jun-Feng (Pharmacology & Therapeutics) Parkinson, Fiona (Pharmacology & Therapeutics) Eftekharpour, Eftekhar (Physiology & Pathophysiology) S-nitrosylation vesicular transporter nitric oxide Alzheimer's disease Oxidative stress is one of the major characteristics in Alzheimer’s disease, and converging evidence indicates that cysteine S-nitrosylation might be related in AD pathology. My results demonstrated exogenous S-nitrosoglutathione was able to S-nitrosylate vAChT, vMAT2, vGluT1 and vGluT2. S-nitrosylation of these vesicular transporters inhibited the uptake of [3H]acetylcholine, [3H]dopamine and [3H]glutamate respectively. APP/PS1 transgenic mice were used to investigate neurotransmission dysfunctions of Alzheimer’s disease. Global protein S-nitrosylation was increased in the 9 and 12 month APP/PS1 mice. Further investigation demonstrated an increase of vAChT and vGluT1 S-nitrosylation in frontal cortex of 6, 9 and 12 month APP/PS1 mice and an increased vAChT and vGluT1 S-nitrosylation was found in hippocampus of 3 month APP/PS1 mice. These findings together suggest that S-nitrosylation of vesicular transporters inhibits the uptake of neurotransmitters, and S-nitrosylation of vAChT and might be associated with the neurotransmission dysfunction of acetylcholine and glutamate in Alzheimer’s disease. 2015-03-27T19:32:54Z 2015-03-27T19:32:54Z 2015-03-27 http://hdl.handle.net/1993/30316 |
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S-nitrosylation vesicular transporter nitric oxide Alzheimer's disease |
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S-nitrosylation vesicular transporter nitric oxide Alzheimer's disease Wang, Ying Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease |
description |
Oxidative stress is one of the major characteristics in Alzheimer’s disease, and converging evidence indicates that cysteine S-nitrosylation might be related in AD pathology. My results demonstrated exogenous S-nitrosoglutathione was able to S-nitrosylate vAChT, vMAT2, vGluT1 and vGluT2. S-nitrosylation of these vesicular transporters inhibited the uptake of [3H]acetylcholine, [3H]dopamine and [3H]glutamate respectively.
APP/PS1 transgenic mice were used to investigate neurotransmission dysfunctions of Alzheimer’s disease. Global protein S-nitrosylation was increased in the 9 and 12 month APP/PS1 mice. Further investigation demonstrated an increase of vAChT and vGluT1 S-nitrosylation in frontal cortex of 6, 9 and 12 month APP/PS1 mice and an increased vAChT and vGluT1 S-nitrosylation was found in hippocampus of 3 month APP/PS1 mice.
These findings together suggest that S-nitrosylation of vesicular transporters inhibits the uptake of neurotransmitters, and S-nitrosylation of vAChT and might be associated with the neurotransmission dysfunction of acetylcholine and glutamate in Alzheimer’s disease. |
author2 |
Wang, Jun-Feng (Pharmacology & Therapeutics) |
author_facet |
Wang, Jun-Feng (Pharmacology & Therapeutics) Wang, Ying |
author |
Wang, Ying |
author_sort |
Wang, Ying |
title |
Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease |
title_short |
Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease |
title_full |
Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease |
title_fullStr |
Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease |
title_full_unstemmed |
Oxidative modification of vesicular transporters in an animal model of Alzheimer’s disease |
title_sort |
oxidative modification of vesicular transporters in an animal model of alzheimer’s disease |
publishDate |
2015 |
url |
http://hdl.handle.net/1993/30316 |
work_keys_str_mv |
AT wangying oxidativemodificationofvesiculartransportersinananimalmodelofalzheimersdisease |
_version_ |
1716803916543295488 |