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Transcriptome analysis in a rat model of L-DOPA-induced dyskinesia

Author

Summary, in English

We have examined the pattern of striatal messenger RNA expression of over 8000 genes in a rat model of levodopa (L-DOPA)-induced dyskinesia and Parkinson disease (PD). 6-Hydroxydopamine (6-OHDA)-lesioned rats were treated with L-DOPA or physiological saline for 22 days and repeatedly tested for antiakinetic response to L-DOPA and the development of abnormal involuntary movements (AIMs). In a comparison of rats that developed a dyskinetic motor response to rats that did not, we found striking differences in gene expression patterns. In rats that developed dyskinesia, GABA neurons had an increased transcriptional activity, and genes involved in Ca2+ homeostasis, in Ca2+-dependent signaling, and in structural and synaptic plasticity were upregulated. The gene expression patterns implied that the dyskinetic striatum had increased transcriptional, as well as synaptic activity, and decreased capacity for energy production. Some basic maintenance chores such as ribosome protein biosynthesis were downregulated, possibly a response to expended of ATP levels. (C) 2004 Elsevier Inc. All rights reserved.

Publishing year

2004

Language

English

Pages

219-236

Publication/Series

Neurobiology of Disease

Volume

17

Issue

2

Document type

Journal article

Publisher

Elsevier

Topic

  • Neurosciences

Keywords

  • calcium
  • striatum
  • microarrays
  • gene
  • 6-hydroxydopamine
  • Parkinson's disease
  • L-DOPA
  • dyskinesia
  • GABA
  • ATPases
  • ribosomes

Status

Published

Research group

  • Basal Ganglia Pathophysiology
  • Neurobiology

ISBN/ISSN/Other

  • ISSN: 0969-9961