Abstract
Parkinson's disease is a neurodegenerative disorder characterized by the progressive loss of dopaminergic neurons in the substantia nigra and a marked reduction of dopamine (DA) levels in the striatum. Binding to its specific receptors, DA switches on a complex program of intracellular signaling that regulates gene expression. We evaluated the changes in striatal gene expression in a mouse model of Parkinson's disease, using differential display analysis. The mRNA for the cytoskeleton family proteins, radixin, cofilin and centractin/ARP-1, was abnormally expressed in the striatum of these MPTP-treated mice. Moreover, we also found that radixin mRNA and its protein levels are under DA control through specific D1-dopaminergic receptors in a dose- and time-dependent manner in the GT1-7 neural cell line. These findings suggest a role for DA for regulation of cytoskeletal proteins involved in the integrity and function of synapsis.
Publication types
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Research Support, Non-U.S. Gov't
MeSH terms
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1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine / pharmacology
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Animals
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Corpus Striatum / metabolism*
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Corpus Striatum / pathology
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Corpus Striatum / physiopathology
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Cyclic AMP / metabolism
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Cytoskeletal Proteins / genetics
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Cytoskeletal Proteins / metabolism
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Cytoskeleton / genetics*
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Cytoskeleton / metabolism
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Cytoskeleton / pathology
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Disease Models, Animal
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Dopamine / metabolism
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Gene Expression Regulation / genetics*
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Male
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Membrane Proteins / genetics
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Membrane Proteins / metabolism
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Mice
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Mice, Inbred C57BL
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Neurons / metabolism*
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Neurons / pathology
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Parkinsonian Disorders / genetics*
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Parkinsonian Disorders / metabolism
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Parkinsonian Disorders / pathology
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Parkinsonian Disorders / physiopathology
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RNA, Messenger / metabolism
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Receptors, Dopamine D1 / metabolism
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Signal Transduction / drug effects
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Signal Transduction / physiology
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Tumor Cells, Cultured
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Up-Regulation / drug effects
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Up-Regulation / genetics
Substances
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Cytoskeletal Proteins
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Membrane Proteins
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RNA, Messenger
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Receptors, Dopamine D1
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radixin
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1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine
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Cyclic AMP
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Dopamine