Inhibition of histone deacetylases enhances the function of serotoninergic neurons in organotypic raphe slice cultures
•We examined the effects of HDAC inhibitors on 5-HT neurons in raphe slice cultures.•Sustained treatment with trichostatin A (TSA) increased 5-HT synthesis and release.•TSA enhanced AMPAR-mediated 5-HT release with increased GluA2 gene expression.•CaMKII inhibitors blocked TSA-induced increase in 5-...
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Veröffentlicht in: | Neuroscience letters 2015-04, Vol.593, p.72-77 |
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Zusammenfassung: | •We examined the effects of HDAC inhibitors on 5-HT neurons in raphe slice cultures.•Sustained treatment with trichostatin A (TSA) increased 5-HT synthesis and release.•TSA enhanced AMPAR-mediated 5-HT release with increased GluA2 gene expression.•CaMKII inhibitors blocked TSA-induced increase in 5-HT release, but not synthesis.•Enhanced 5-HTergic function is caused by increased AMPAR and CaMKII by epigenetics.
Inhibition of histone deacetylases (HDACs) is a promising approach for the treatment of mood disorders. However, the effects of HDAC inhibition on the serotonin (5-HT) system, a common target for psychiatric disorders, are poorly understood. Here, we show that a broad-spectrum HDAC inhibitor, trichostatin A (TSA), enhances the function of 5-HT neurons in organotypic raphe slice cultures. Sustained treatment with TSA (1μM) for 2 or 4 days significantly increased the 5-HT tissue content and tryptophan hydroxylase 2 (TPH2) expression, which were accompanied by hyper-acetylation of histone H3 in the promoter region of the TPH2 gene. TSA treatment for 4 days increased the extracellular 5-HT level, which was significantly suppressed in the presence of the selective AMPA receptor (AMPAR) antagonist NBQX. Moreover, the expression of both the AMPAR subunit GluA2 and Ca2+/calmodulin-dependent kinase II α (CaMKIIα) mRNAs were significantly increased by TSA treatment. Co-treatment with the CaMKII inhibitors KN-62 and KN-93 prevented the TSA-induced increase in 5-HT release, but had no effect on the increases in 5-HT tissue content. These results suggest that inhibition of HDACs increases 5-HT synthesis and release by epigenetic mechanisms, and that 5-HT release is mediated by the enhancement of AMPAR-mediated excitatory inputs and CaMKII signaling. |
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ISSN: | 0304-3940 1872-7972 |
DOI: | 10.1016/j.neulet.2015.03.028 |