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PMID: 12145295 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Effect of mutant alpha-synuclein on dopamine homeostasis in a new human mesencephalic cell line.

The Journal of biological chemistry ·Vol. 277 ·No. 41 ·2002-10-11 ·Pages 38884-94

Lotharius J, Barg S, Wiekop P, Lundberg C, Raymon HK, Brundin P

Abstract

Mutations in alpha-synuclein have been linked to rare, autosomal dominant forms of Parkinson's disease. Despite its ubiquitous expression, mutant alpha-synuclein primarily leads to the loss of dopamine-producing neurons in the substantia nigra. alpha-Synuclein is a presynaptic nerve terminal protein of unknown function, although several studies suggest it is important for synaptic plasticity and maintenance. The present study utilized a new human mesencephalic cell line, MESC2.10, to study the effect of A53T mutant alpha-synuclein on dopamine homeostasis. In addition to expressing markers of mature dopamine neurons, differentiated MESC2.10 cells are electrically active, produce dopamine, and express wild-type human alpha-synuclein. Lentivirus-induced overexpression of A53T mutant alpha-synuclein in differentiated MESC2.10 cells resulted in down-regulation of the vesicular dopamine transporter (VMAT2), decreased potassium-induced and increased amphetamine-induced dopamine release, enhanced cytoplasmic dopamine immunofluorescence, and increased intracellular levels of superoxide. These results suggest that mutant alpha-synuclein leads to an impairment in vesicular dopamine storage and consequent accumulation of dopamine in the cytosol, a pathogenic mechanism that underlies the toxicity of the psychostimulant amphetamine and the parkinsonian neurotoxin 1-methyl-4-phenylpyridinium. Interestingly, cells expressing A53T mutant alpha-synuclein were resistant to amphetamine-induced toxicity. Because extravesicular, cytoplasmic dopamine can be easily oxidized into reactive oxygen species and other toxic metabolites, mutations in alpha-synuclein might lead to Parkinson's disease by triggering protracted, low grade dopamine toxicity resulting in terminal degeneration and ultimately cell death.

MeSH Terms
Amphetamines/pharmacology Biomarkers Cell Line Dopamine/metabolism Embryo, Mammalian/anatomy & histology Gene Transfer Techniques Homeostasis Humans Inclusion Bodies/metabolism Lentivirus/genetics,metabolism Mesencephalon/cytology,metabolism Nerve Tissue Proteins/genetics,metabolism Neurons/cytology,drug effects,physiology Parkinson Disease/genetics Patch-Clamp Techniques Phosphoproteins/genetics,metabolism Superoxides/metabolism Synucleins alpha-Synuclein
Chemicals
Amphetamines Biomarkers Nerve Tissue Proteins Phosphoproteins SNCA protein, human Synucleins alpha-Synuclein Superoxides Dopamine
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Lotharius Julie
Section for Neuronal Survival, Wallenberg Neuroscience Center, Lund University, Lund 221 84, Sweden. [email protected]
Barg Sebastian
Wiekop Pia
Lundberg Cecilia
Raymon Heather K
Brundin Patrik
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2002-10-11
Epub
2002-00-26
Pages
38884-94
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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