Stimulus-specific combinatorial functionality of neuronal c-fos enhancers

JY Joo, K Schaukowitch, L Farbiak, G Kilaru… - Nature …, 2016 - nature.com
JY Joo, K Schaukowitch, L Farbiak, G Kilaru, TK Kim
Nature neuroscience, 2016nature.com
The c-fos gene (also known as Fos) is induced by a broad range of stimuli and is a reliable
marker for neural activity. Here we demonstrate that multiple enhancers surrounding the c-
fos gene are crucial for ensuring robust c-fos response to various stimuli. Membrane
depolarization, brain-derived neurotrophic factor (BDNF) and forskolin activate distinct
subsets of the enhancers to induce c-fos transcription in neurons, suggesting that stimulus-
specific combinatorial activation of multiple enhancers underlies the broad inducibility of the …
Abstract
The c-fos gene (also known as Fos) is induced by a broad range of stimuli and is a reliable marker for neural activity. Here we demonstrate that multiple enhancers surrounding the c-fos gene are crucial for ensuring robust c-fos response to various stimuli. Membrane depolarization, brain-derived neurotrophic factor (BDNF) and forskolin activate distinct subsets of the enhancers to induce c-fos transcription in neurons, suggesting that stimulus-specific combinatorial activation of multiple enhancers underlies the broad inducibility of the c-fos gene. Accordingly, the functional requirement of key transcription factors varies depending on the type of stimulation. Combinatorial enhancer activation also occurs in the brain. Providing a comprehensive picture of the c-fos induction mechanism beyond the minimal promoter, our study should help in understanding the physiological nature of c-fos induction in relation to neural activity and plasticity.
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