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PMID: 17131421 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

RNA interference-mediated knockdown of alpha-synuclein protects human dopaminergic neuroblastoma cells from MPP(+) toxicity and reduces dopamine transport.

Journal of neuroscience research ·Vol. 85 ·No. 2 ·2007-02-01 ·Pages 351-63

Fountaine TM, Wade-Martins R

Abstract

The critical observation in the pathology of Parkinson's disease (PD) is that neurodegeneration is largely restricted to dopaminergic neurons that develop cytoplasmic inclusions called Lewy bodies. These aggregations contain the protein alpha-synuclein. Furthermore, it is becoming apparent that alpha-synuclein expression levels are a major factor in PD pathogenesis. Patients with additional copies of the alpha-synuclein gene develop PD with a severity proportional to levels of alpha-synuclein overexpression. Similarly, overexpression of alpha-synuclein in in vitro and in vivo models has been shown to be toxic. However, little is known about the effects of reducing alpha-synuclein expression in human neurons. To investigate this, we have developed a system in which levels of alpha-synuclein can be acutely suppressed by using RNA interference (RNAi) in a physiologically relevant human dopaminergic cellular model. By using small interfering RNA (siRNA) molecules targeted to endogenous alpha-synuclein, we achieved 80% protein knockdown. We show that alpha-synuclein knockdown has no effect on cellular survival either under normal growth conditions over 5 days or in the presence of the mitochondrial inhibitor rotenone. Knockdown does, however, confer resistance to the dopamine transporter (DAT)-dependent neurotoxin N-methyl-4-phenylpyridinium (MPP(+)). We then demonstrate for the first time that alpha-synuclein suppression decreases dopamine transport in human cells, reducing the maximal uptake velocity (V(max)) of dopamine and the surface density of its transporter by up to 50%. These results show that RNAi-mediated alpha-synuclein knockdown alters cellular dopamine homeostasis in human cells and may suggest a mechanism for the increased survival in the presence of MPP(+), a toxin used extensively to model Parkinson's disease.

MeSH Terms
1-Methyl-4-phenylpyridinium/toxicity Blotting, Western Cell Line, Tumor Cell Survival/drug effects,physiology Dopamine/metabolism Dopamine Plasma Membrane Transport Proteins/drug effects,metabolism Fluorescent Antibody Technique Humans Neuroblastoma/metabolism Neurons/drug effects,metabolism Neurotoxins/toxicity Protein Transport/drug effects,physiology RNA Interference Reverse Transcriptase Polymerase Chain Reaction Rotenone/toxicity Transfection alpha-Synuclein/biosynthesis,genetics
Chemicals
Dopamine Plasma Membrane Transport Proteins Neurotoxins alpha-Synuclein Rotenone 1-Methyl-4-phenylpyridinium Dopamine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Fountaine Timothy M
The Wellcome Trust Centre for Human Genetics, University of Oxford, Oxford, United Kingdom.
Wade-Martins Richard
Article Info
Journal
Journal of neuroscience research
Abbr.
J Neurosci Res
ISSN
0360-4012
Published
2007-02-01
Pages
351-63
Language
English
Region
United States
NLM ID
7600111
Subset
IM
Grants
Wellcome Trust · 073141 · United Kingdom
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