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PMID: 12957496 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Regulation of glial glutamate transporter expression by growth factors.

Experimental neurology ·Vol. 183 ·No. 1 ·2003-09-00 ·Pages 124-35

Figiel M, Maucher T, Rozyczka J, Bayatti N, Engele J

Abstract

Injuries to the brain result in the decline of glial glutamate transporter expression within hours and a recovery after several days. One consequence of this disturbed expression seems to consist in the temporary accumulation of toxic extracellular glutamate levels followed by secondary neuronal cell death. Whereas evidence exists that the decline in glutamate transporter expression results from a loss of neuronal PACAP influences on astroglia, the mechanism(s) inducing the reexpression of glial glutamate transporters is presently unknown. We now demonstrate that the injury-induced growth factors EGF, TGFalpha, FGF-2, and PDGF all promote the expression of the glutamate transporters GLT-1 and/or GLAST in cultured cortical astroglia. In contrast, similar stimulatory influences were absent with GDNF and BDNF, growth factors not affected by brain injuries. The effects of EGF, TGFalpha, FGF-2, and PDGF on glial glutamate transport were only partly redundant and involved distinctly different signaling pathways. Unlike EGF, TGFalpha, and FGF-2, PDGF promoted GLT-1, but not GLAST expression and further failed to increase the maximal velocity of sodium-dependent glutamate uptake. Moreover, FGF-2 only affected glial glutamate transport when the RAF-MEK-ERK signaling pathway was concomitantly inhibited with PD98059. Depending on the extracellular growth factor and glutamate transporter subtype, the observed stimulatory effects required the activation of PKA, PKC, and/or AKT. We suggest that after brain injury, reactive processes may limit secondary neuronal cell death by promoting glial glutamate transport. The detailed knowledge of these compensatory mechanisms will eventually allow us to therapeutically interfere with glutamate-associated neuronal cell death in the brain.

MeSH Terms
Amino Acid Transport System X-AG/genetics,metabolism Animals Cells, Cultured ErbB Receptors/metabolism Excitatory Amino Acid Transporter 2/genetics,metabolism Fibroblast Growth Factor 2/pharmacology,physiology Gene Expression Regulation/drug effects,physiology Growth Substances/pharmacology,physiology Ligands Neuroglia/cytology,metabolism Platelet-Derived Growth Factor/pharmacology,physiology Rats Rats, Sprague-Dawley Signal Transduction/drug effects,physiology
Chemicals
Amino Acid Transport System X-AG Excitatory Amino Acid Transporter 2 Growth Substances Ligands Platelet-Derived Growth Factor Fibroblast Growth Factor 2 ErbB Receptors
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Figiel Maciej
Anatomie und Zellbiologie, Universität Ulm, 89069 Ulm, Germany.
Maucher Tobias
Rozyczka Joanna
Bayatti Nadhim
Engele Jürgen
Article Info
Journal
Experimental neurology
Abbr.
Exp Neurol
ISSN
0014-4886
Published
2003-09-00
Pages
124-35
Language
English
Region
United States
NLM ID
0370712
Subset
IM
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