Literature DB >> 8525459

Time-course of modifications elicited by reserpine on the density and mRNA synthesis of the vesicular monoamine transporter, and on the density of the membrane dopamine uptake complex.

L Naudon1, I Leroux-Nicollet, R Raisman-Vozari, D Botton, J Costentin.   

Abstract

The long-term effects of a unique injection of reserpine (5 mg/kg s.c.) on the vesicular monoamine transporter and dopamine uptake complex have been investigated, in parallel with behavioral and neurochemical effects. Early after treatment, a dramatic decrease in locomotor activity, as well as a marked depletion in striatal dopamine (DA), associated with a prominent enhancement in dopaminergic turnover were observed in reserpine-treated rats. From 2 to 60 days after reserpine injection, a recovery in locomotor activity occurred, in parallel with an increased DA content in the striatum, reaching about 50% of controls at day 60. At this time, the dopamine turnover was quite normal. The density of the dopamine uptake sites in the striatum, studied with 3H GBR12783, was unchanged after reserpine treatment at any time studied up to 60 days. By contrast, the density of binding sites for 3H dihydrotetrabenazine (3H TBZOH), a marker for the vesicular monoamine transporter, remained dramatically decreased in the striatum all over the time of the study (> -90% of controls at day 2 and -80% at day 30 and 60). A lesser decrease (-60%) was observed in the substantia nigra pars compacta (SNc), 2 and 30 days after reserpine treatment. This suggests that at least 60% of the vesicular monoamine transporter is sensitive to reserpine in this cell bodies region, indicating that this proportion of the transporter is integrated in functional vesicles, a prerequisite for reserpine binding.(ABSTRACT TRUNCATED AT 250 WORDS)

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Year:  1995        PMID: 8525459     DOI: 10.1002/syn.890210105

Source DB:  PubMed          Journal:  Synapse        ISSN: 0887-4476            Impact factor:   2.562


  5 in total

Review 1.  Regulation of the biosynthesis of large dense-core vesicles in chromaffin cells and neurons.

Authors:  H Winkler; R Fischer-Colbrie
Journal:  Cell Mol Neurobiol       Date:  1998-04       Impact factor: 5.046

2.  Sex and strain differences in dynamic and static properties of the mesolimbic dopamine system.

Authors:  Maria Teresa Rivera-Garcia; Aqilah M McCane; Tara G Chowdhury; Kathryn G Wallin-Miller; Bita Moghaddam
Journal:  Neuropsychopharmacology       Date:  2020-07-14       Impact factor: 7.853

3.  Enhanced amphetamine- and K+-mediated dopamine release in rat striatum after repeated amphetamine: differential requirements for Ca2+- and calmodulin-dependent phosphorylation and synaptic vesicles.

Authors:  L Kantor; G H Hewlett; M E Gnegy
Journal:  J Neurosci       Date:  1999-05-15       Impact factor: 6.167

4.  In vivo [11C]dihydrotetrabenazine binding in rat striatum: sensitivity to dopamine concentrations.

Authors:  Michael R Kilbourn; Elizabeth R Butch; Timothy Desmond; Phillip Sherman; Paul E Harris; Kirk A Frey
Journal:  Nucl Med Biol       Date:  2009-10-03       Impact factor: 2.408

5.  Behavioral, neurochemical, and electrophysiological characterization of a genetic mouse model of depression.

Authors:  Malika El Yacoubi; Saoussen Bouali; Daniela Popa; Laurent Naudon; Isabelle Leroux-Nicollet; Michel Hamon; Jean Costentin; Joëlle Adrien; Jean-Marie Vaugeois
Journal:  Proc Natl Acad Sci U S A       Date:  2003-05-05       Impact factor: 11.205

  5 in total

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