Abstract
We probed an epigenetic regulatory path from small molecule to neuronal gene activation. Isoxazole small molecules triggered robust neuronal differentiation in adult neural stem cells, rapidly signaling to the neuronal genome via Ca(2+) influx. Ca(2+)-activated CaMK phosphorylated and mediated nuclear export of the MEF2 regulator HDAC5, thereby de-repressing neuronal genes. These results provide new tools to explore the epigenetic signaling circuitry specifying neuronal cell fate and new leads for neuro-regenerative drugs.
MeSH terms
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Animals
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Basic Helix-Loop-Helix Transcription Factors / genetics
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Calcium Signaling / drug effects
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Cell Differentiation* / drug effects
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Cell Differentiation* / genetics
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Cell Line
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Dose-Response Relationship, Drug
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Epigenesis, Genetic / drug effects
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Gene Expression / drug effects
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Isoxazoles* / chemistry
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Isoxazoles* / pharmacology
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Molecular Structure
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Nerve Tissue Proteins / genetics
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Neurons / cytology
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Neurons / drug effects*
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Neurons / metabolism
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Phosphorylation
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Rats
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Receptors, AMPA / genetics
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Small Molecule Libraries* / chemistry
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Small Molecule Libraries* / pharmacology
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Stem Cells / cytology
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Stem Cells / drug effects*
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Stem Cells / metabolism
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Structure-Activity Relationship
Substances
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Basic Helix-Loop-Helix Transcription Factors
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Isoxazoles
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Nerve Tissue Proteins
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Receptors, AMPA
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Small Molecule Libraries
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Neurogenic differentiation factor 1
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glutamate receptor ionotropic, AMPA 2
Associated data
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PubChem-Substance/49738139
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PubChem-Substance/49738140
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PubChem-Substance/49738141
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PubChem-Substance/49738142
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PubChem-Substance/49738143
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PubChem-Substance/49738144
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PubChem-Substance/49738145
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PubChem-Substance/49738146
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PubChem-Substance/49738147
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PubChem-Substance/49738148
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PubChem-Substance/49738149
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PubChem-Substance/49738150
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PubChem-Substance/49738151
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PubChem-Substance/49738152
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PubChem-Substance/49738153
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PubChem-Substance/49738154
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PubChem-Substance/49738155
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PubChem-Substance/49738156
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PubChem-Substance/49738157