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PMID: 16183083 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Intramural Research Support, Non-U.S. Gov't

Altered serotonin synthesis, turnover and dynamic regulation in multiple brain regions of mice lacking the serotonin transporter.

Neuropharmacology ·Vol. 49 ·No. 6 ·2005-11-00 ·Pages 798-810

Kim DK, Tolliver TJ, Huang SJ, Martin BJ, Andrews AM, Wichems C, Holmes A, Lesch KP, Murphy DL

Abstract

To evaluate the consequences of inactivation of the serotonin transporter (SERT) gene on 5-HT homeostasis and function, 5-HT synthesis and turnover rates were measured using the decarboxylase inhibition method in multiple brain regions (frontal cortex, striatum, brainstem, hippocampus and hypothalamus) from mice with a genetic disruption of SERT. 5-HT synthesis rates were increased 30-60% in the different brain regions of SERT -/- mice compared to littermate +/+ control mice despite 55-70% reductions in tissue 5-HT concentrations. Brain regions that possessed a greater capacity to increase synthesis and turnover (frontal cortex, striatum) demonstrated lesser reductions in tissue 5-HT. Female SERT -/- mice had greater increases (79%) in brain 5-HT synthesis than male -/- mice did (25%), a finding associated with higher brain tryptophan concentrations in females. Despite increased 5-HT synthesis, there was no change in either TPH2 or TPH1 mRNA levels or in maximal in vitro TPH activity in the brainstem of SERT -/- mice. Catecholamine homeostasis as reflected in brain tissue concentrations and in synthesis and turnover of dopamine and norepinephrine was unchanged in SERT -/- mice. Taken together, the results demonstrate a markedly altered homeostatic situation in SERT -/- mice that lack 5-HT reuptake, resulting in markedly depleted tissue stores that are inadequately compensated for by increased 5-HT synthesis, with brain region and gender specificity observed.

MeSH Terms
Animals Aorta/metabolism Blotting, Northern/methods Brain/anatomy & histology,drug effects,metabolism Chromatography, High Pressure Liquid/methods Dopamine/metabolism Female Gene Expression Regulation/drug effects Hydroxyindoleacetic Acid/metabolism Kidney/metabolism Levodopa/metabolism Liver/metabolism Lung/metabolism Male Methyldopa/analogs & derivatives,pharmacology Mice Mice, Inbred C57BL Mice, Knockout Models, Biological Myocardium/metabolism Nonlinear Dynamics Norethandrolone/metabolism Pancreas/metabolism RNA, Messenger/metabolism Serotonin/metabolism Serotonin Plasma Membrane Transport Proteins/deficiency,physiology Sex Factors Spleen/metabolism Time Factors Tryptophan Hydroxylase/genetics,metabolism
Chemicals
RNA, Messenger Serotonin Plasma Membrane Transport Proteins Serotonin Levodopa Hydroxyindoleacetic Acid Methyldopa alpha-monofluoromethyldopa Tph1 protein, mouse Tph2 protein, mouse Tryptophan Hydroxylase Norethandrolone Dopamine
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Kim Dong-Kyu
Laboratory of Clinical Science, National Institute of Mental Health, NIH, Bethesda, MD 20892, USA.
Tolliver Teresa J
Huang Su-Jan
Martin Bradley J
Andrews Anne M
Wichems Christine
Holmes Andrew
Lesch Klaus-Peter
Murphy Dennis L
Article Info
Journal
Neuropharmacology
Abbr.
Neuropharmacology
ISSN
0028-3908
Published
2005-11-00
Epub
2005-00-23
Pages
798-810
Language
English
Region
England
NLM ID
0236217
Subset
IM
Grants
Intramural NIH HHS · United States
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