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NEUROD2 Regulates Stim1 Expression and Store-Operated Calcium Entry in Cortical Neurons.


ABSTRACT: Calcium signaling controls many key processes in neurons, including gene expression, axon guidance, and synaptic plasticity. In contrast to calcium influx through voltage- or neurotransmitter-gated channels, regulatory pathways that control store-operated calcium entry (SOCE) in neurons are poorly understood. Here, we report a transcriptional control of Stim1 (stromal interaction molecule 1) gene, which is a major sensor of endoplasmic reticulum (ER) calcium levels and a regulator of SOCE. By using a genome-wide chromatin immunoprecipitation and sequencing approach in mice, we find that NEUROD2, a neurogenic transcription factor, binds to an intronic element within the Stim1 gene. We show that NEUROD2 limits Stim1 expression in cortical neurons and consequently fine-tunes the SOCE response upon depletion of ER calcium. Our findings reveal a novel mechanism that regulates neuronal calcium homeostasis during cortical development.

SUBMITTER: Guner G 

PROVIDER: S-EPMC5343279 | biostudies-literature | 2017 Jan-Feb

REPOSITORIES: biostudies-literature

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NEUROD2 Regulates <i>Stim1</i> Expression and Store-Operated Calcium Entry in Cortical Neurons.

Guner Gokhan G   Guzelsoy Gizem G   Isleyen Fatma Sadife FS   Sahin Gulcan Semra GS   Akkaya Cansu C   Bayam Efil E   Kotan Eser Ilgin EI   Kabakcioglu Alkan A   Ince-Dunn Gulayse G  

eNeuro 20170101 1


Calcium signaling controls many key processes in neurons, including gene expression, axon guidance, and synaptic plasticity. In contrast to calcium influx through voltage- or neurotransmitter-gated channels, regulatory pathways that control store-operated calcium entry (SOCE) in neurons are poorly understood. Here, we report a transcriptional control of <i>Stim1</i> (stromal interaction molecule 1) gene, which is a major sensor of endoplasmic reticulum (ER) calcium levels and a regulator of SOCE  ...[more]

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