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PMID: 16524369 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Fibroblast growth factor receptor signaling affects development and function of dopamine neurons - inhibition results in a schizophrenia-like syndrome in transgenic mice.

Journal of neurochemistry ·Vol. 97 ·No. 5 ·2006-06-00 ·Pages 1243-58

Klejbor I, Myers JM, Hausknecht K, Corso TD, Gambino AS, Morys J, Maher PA, Hard R, Richards J, Stachowiak EK, Stachowiak MK

Abstract

Developing and mature midbrain dopamine (DA) neurons express fibroblast growth factor (FGF) receptor-1 (FGFR1). To determine the role of FGFR1 signaling in the development of DA neurons, we generated transgenic mice expressing a dominant negative mutant [FGFR1(TK-)] from the catecholaminergic, neuron-specific tyrosine hydroxylase (TH) gene promoter. In homozygous th(tk-)/th(tk-) mice, significant reductions in the size of TH-immunoreactive neurons were found in the substantia nigra compacta (SNc) and the ventral tegmental area (VTA) at postnatal days 0 and 360. Newborn th(tk-)/th(tk-) mice had a reduced density of DA neurons in both SNc and VTA, and the changes in SNc were maintained into adulthood. The reduced density of DA transporter in the striatum further demonstrated an impaired development of the nigro-striatal DA system. Paradoxically, the th(tk-)/th(tk-) mice had increased levels of DA, homovanilic acid and 3-methoxytyramine in the striatum, indicative of excessive DA transmission. These structural and biochemical changes in DA neurons are similar to those reported in human patients with schizophrenia and, furthermore, these th(tk-)/th(tk-) mice displayed an impaired prepulse inhibition that was reversed by a DA receptor antagonist. Thus, this study establishes a new developmental model for a schizophrenia-like disorder in which the inhibition of FGF signaling leads to alterations in DA neurons and DA-mediated behavior.

MeSH Terms
Animals Cell Differentiation/genetics Cell Enlargement Disease Models, Animal Dopamine/analogs & derivatives,metabolism Dopamine Plasma Membrane Transport Proteins/metabolism Female Fibroblast Growth Factor 2/metabolism Genetic Predisposition to Disease/genetics Homovanillic Acid/metabolism Male Mesencephalon/growth & development,metabolism,physiopathology Mice Mice, Inbred C57BL Mice, Transgenic Neural Inhibition/genetics Neurons/metabolism Promoter Regions, Genetic/genetics Receptor, Fibroblast Growth Factor, Type 1/genetics Reflex, Startle/genetics Schizophrenia/genetics,metabolism,physiopathology Signal Transduction/genetics Substantia Nigra/growth & development,metabolism,physiopathology Tyrosine 3-Monooxygenase/genetics Ventral Tegmental Area/growth & development,metabolism,physiopathology
Chemicals
Dopamine Plasma Membrane Transport Proteins Fibroblast Growth Factor 2 Tyrosine 3-Monooxygenase Fgfr1 protein, mouse Receptor, Fibroblast Growth Factor, Type 1 3-methoxytyramine Dopamine Homovanillic Acid
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Klejbor Ilona
Molecular and Structural Neurobiology and Gene Therapy Program, Departments of Pathology and Anatomical Sciences and Chemistry, SUNY Buffalo, New York 14214, USA.
Myers Jason M
Hausknecht Kathy
Corso Thomas D
Gambino Angelo S
Morys Janusz
Maher Pamela A
Hard Robert
Richards Jerry
Stachowiak Ewa K
Stachowiak Michal K
Article Info
Journal
Journal of neurochemistry
Abbr.
J Neurochem
ISSN
0022-3042
Published
2006-06-00
Epub
2006-00-08
Pages
1243-58
Language
English
Region
England
NLM ID
2985190R
Subset
IM
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