Variations in Promoter Activity Reveal a Differential Expression and Physiology of Glutamate Transporters by Glia in the Developing and Mature CNS
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Open Access
- 20 June 2007
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 27 (25), 6607-6619
- https://doi.org/10.1523/jneurosci.0790-07.2007
Abstract
Glutamate transporters regulate excitatory neurotransmission and prevent glutamate-mediated excitotoxicity in the CNS. To better study the cellular and temporal dynamics of the expression of these transporters, we generated bacterial artificial chromosome promoter Discosoma red [glutamate–aspartate transporter (GLAST)] and green fluorescent protein [glutamate transporter-1 (GLT-1)] reporter transgenic mice. Analysis of these mice revealed a differential activation of the transporter promoters not previously appreciated. GLT-1 promoter activity in the adult CNS is almost completely restricted to astrocytes, often and unexpectedly in a nonoverlapping pattern with GLAST. Spinal cord GLT-1 promoter reporter, protein density, and physiology were 10-fold lower than in brain, suggesting a possible mechanism for regional sensitivity seen in disease. The GLAST promoter is active in both radial glia and many astrocytes in the developing CNS but is downregulated in most astrocytes as the mice mature. In the adult CNS, the highest GLAST promoter activity was observed in radial glia, such as those located in the subgranular layer of the dentate gyrus. The continued expression of GLAST by these neural progenitors raises the possibility that GLAST may have an unanticipated role in regulating their behavior. In addition, GLAST promoter activation was observed in oligodendrocytes in white matter throughout many (e.g., spinal cord and corpus callosum), but not all (e.g., cerebellum), CNS fiber tracts. Overall, these studies of GLT-1 and GLAST promoter activity, protein expression, and glutamate uptake revealed a close correlation between transgenic reporter signals and uptake capacity, indicating that these mice provide the means to monitor the expression and regulation of glutamate transporters in situ.Keywords
This publication has 54 references indexed in Scilit:
- Vesicular release of glutamate from unmyelinated axons in white matterNature Neuroscience, 2007
- Indispensability of the glutamate transporters GLAST and GLT1 to brain developmentProceedings of the National Academy of Sciences, 2006
- Adult neurogenesis and cellular brain repair with neural progenitors, precursors and stem cellsPhilosophical Transactions Of The Royal Society B-Biological Sciences, 2006
- Cellular and subcellular mRNA localization of glutamate transporter isoforms GLT1a and GLT1b in rat brain by in situ hybridizationJournal of Comparative Neurology, 2005
- Glutamate transporters bring competition to the synapseCurrent Opinion in Neurobiology, 2004
- A Transgenic Marker for Newly Born Granule Cells in Dentate GyrusJournal of Neuroscience, 2004
- Highly Efficient Modification of Bacterial Artificial Chromosomes (BACs) Using Novel Shuttle Vectors Containing the R6Kγ Origin of ReplicationGenome Research, 2002
- Abnormal Glutamate Transport Function in Mutant Amyloid Precursor Protein Transgenic MiceExperimental Neurology, 2000
- Homologous recombination based modification in Esherichia coli and germline transmission in transgenic mice of a bacterial artificial chromsomeNature Biotechnology, 1997
- Brain Glutamate Transporter Proteins Form HomomultimersJournal of Biological Chemistry, 1996