Functional Evidence that BDNF Is an Anterograde Neuronal Trophic Factor in the CNS

Fawcett, James P. and Bamji, Shernaz X. and Causing, Carrie G. and Aloyz, Raquel and Aze, Ariel R. and Reader, Thomas A. and McLean, John H. and Miller, Freda D. (1998) Functional Evidence that BDNF Is an Anterograde Neuronal Trophic Factor in the CNS. Journal of Neuroscience, 18 (8). pp. 2808-2821. ISSN 1529-2401

[img] [English] PDF (Migrated (PDF/A Conversion) from original format: (application/pdf)) - Published Version
Available under License Creative Commons Attribution Non-commercial.

Download (1MB)

Abstract

In this report, we have tested the hypothesis that brain-derived neurotrophic factor (BDNF) is an anterograde neurotrophic factor in the CNS and have focused on central noradrenergic neurons that synthesize BDNF. Double-label immunocytochemistry for BDNF and dopamine-β-hydroxylase (DBH), a marker for noradrenergic neurons, demonstrated that BDNF is partially localized to noradrenergic nerve fibers and terminals in the adult rat brain. To test the functional importance of this anterograde BDNF, we analyzed transgenic mice carrying a DBH-BDNF minigene. Increased synthesis of BDNF in noradrenergic neurons of DBH-BDNF mice caused elevated TrkB tyrosine kinase activation throughout postnatal life in the neocortex, a noradrenergic target region. This afferently regulated increase in TrkB receptor activity led to long-lasting alterations in cortical morphology. To determine whether noradrenergic neuron-expressed BDNF also anterogradely regulated neuronal survival, we examined a second noradrenergic target, neonatal facial motoneurons. One week after axotomy, 72% of facial motoneurons were lost in control animals, whereas only 30-35% were lost in DBH-BDNF transgenic mice. Altogether, these results indicate that BDNF is anterogradely transported to fibers and terminals of noradrenergic neurons, that anterogradely secreted BDNF causes activation of TrkB in target regions, and that this secretion has functional consequences for target neuron survival and differentiation. This presynaptic secretion of BDNF may provide a cellular mechanism for modulating neural circuitry, in either the developing or mature nervous system.

Item Type: Article
URI: http://research.library.mun.ca/id/eprint/471
Item ID: 471
Keywords: Anterograde neurotrophic factors; BDNF; Cerebral cortex; Motor neurons; Neuronal development; Neuronal regeneration; Noradrenergic neurons
Department(s): Medicine, Faculty of
Date: 15 April 1998
Date Type: Publication

Actions (login required)

View Item View Item

Downloads

Downloads per month over the past year

View more statistics