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Publication : Differential spatial expression and subcellular localization of CtBP family members in rodent brain.

First Author  Hübler D Year  2012
Journal  PLoS One Volume  7
Issue  6 Pages  e39710
PubMed ID  22745816 Mgi Jnum  J:263383
Mgi Id  MGI:6189269 Doi  10.1371/journal.pone.0039710
Citation  Hubler D, et al. (2012) Differential spatial expression and subcellular localization of CtBP family members in rodent brain. PLoS One 7(6):e39710
abstractText  C-terminal binding proteins (CtBPs) are well-characterized nuclear transcriptional co-regulators. In addition, cytoplasmic functions were discovered for these ubiquitously expressed proteins. These include the involvement of the isoform CtBP1-S/BARS50 in cellular membrane-trafficking processes and a role of the isoform RIBEYE as molecular scaffolds in ribbons, the presynaptic specializations of sensory synapses. CtBPs were suggested to regulate neuronal differentiation and they were implied in the control of gene expression during epileptogenesis. However, the expression patterns of CtBP family members in specific brain areas and their subcellular localizations in neurons in situ are largely unknown. Here, we performed comprehensive assessment of the expression of CtBP1 and CtBP2 in mouse brain at the microscopic and the ultra-structural levels using specific antibodies. We quantified and compared expression levels of both CtBPs in biochemically isolated brain fractions containing cellular nuclei or synaptic compartment. Our study demonstrates differential regional and subcellular expression patterns for the two CtBP family members in brain and reveals a previously unknown synaptic localization for CtBP2 in particular brain regions. Finally, we propose a mechanism of differential synapto-nuclear targeting of its splice variants CtBP2-S and CtBP2-L in neurons.
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