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PMID: 12620975 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

BDNF gene replacement reveals multiple mechanisms for establishing neurotrophin specificity during sensory nervous system development.

Development (Cambridge, England) ·Vol. 130 ·No. 8 ·2003-04-00 ·Pages 1479-91

Agerman K, Hjerling-Leffler J, Blanchard MP, Scarfone E, Canlon B, Nosrat C, Ernfors P

Abstract

Neurotrophins have multiple functions during peripheral nervous system development such as controlling neuronal survival, target innervation and synaptogenesis. Neurotrophin specificity has been attributed to the selective expression of the Trk tyrosine kinase receptors in different neuronal subpopulations. However, despite overlapping expression of TrkB and TrkC in many sensory ganglia, brain-derived neurotrophic factor (BDNF) and neurotrophin 3 (NT3) null mutant mice display selective losses in neuronal subpopulations. In the present study we have replaced the coding part of the BDNF gene in mice with that of NT3 (BDNF(NT3/NT3)) to analyse the specificity and selective roles of BDNF and NT3 during development. Analysis of BDNF(NT3/NT3) mice showed striking differences in the ability of NT3 to promote survival, short-range innervation and synaptogenesis in different sensory systems. In the cochlea, specificity is achieved by a tightly controlled spatial and temporal ligand expression. In the vestibular system TrkB or TrkC activation is sufficient to promote vestibular ganglion neuron survival, while TrkB activation is required to promote proper innervation and synaptogenesis. In the gustatory system, NT3 is unable to replace the actions of BDNF possibly because of a temporally selective expression of TrkB in taste neurons. We conclude that there is no general mechanism by which neurotrophin specificity is attained and that specificity is achieved by (i) a tightly controlled spatial and temporal expression of ligands, (ii) different Trk receptors playing distinct roles within the same neuronal subpopulation, or (iii) selective receptor expression in sensory neuron subpopulations.

MeSH Terms
Animals Brain-Derived Neurotrophic Factor/genetics,metabolism Cochlea/cytology,growth & development,innervation,metabolism Fluorescent Dyes/metabolism Gene Targeting Hippocampus/cytology,metabolism In Situ Hybridization Mice Mice, Transgenic Neurons/cytology,metabolism Neurons, Afferent/physiology Neurotrophin 3/genetics,metabolism Receptor, trkB/metabolism Receptor, trkC/metabolism Signal Transduction/physiology Taste Buds/cytology,growth & development,metabolism Vestibule, Labyrinth/cytology,growth & development,innervation,metabolism
Chemicals
Brain-Derived Neurotrophic Factor Fluorescent Dyes Neurotrophin 3 Receptor, trkB Receptor, trkC
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Agerman Karin
Unit of Molecular Neurobiology, MBB, Karolinska Institutet, 171 77 Stockholm, Sweden.
Hjerling-Leffler Jens
Blanchard Marie Pierre
Scarfone Eric
Canlon Barbara
Nosrat Christopher
Ernfors Patrik
Article Info
Journal
Development (Cambridge, England)
Abbr.
Development
ISSN
0950-1991
Published
2003-04-00
Pages
1479-91
Language
English
Region
England
NLM ID
8701744
Subset
IM
Grants
Action on Hearing Loss · G10 · United Kingdom
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