Literature DB >> 24990931

Store-operated CRAC channels regulate gene expression and proliferation in neural progenitor cells.

Agila Somasundaram1, Andrew K Shum1, Helen J McBride2, John A Kessler3, Stefan Feske4, Richard J Miller1, Murali Prakriya5.   

Abstract

Calcium signals regulate many critical processes during vertebrate brain development including neurogenesis, neurotransmitter specification, and axonal outgrowth. However, the identity of the ion channels mediating Ca(2+) signaling in the developing nervous system is not well defined. Here, we report that embryonic and adult mouse neural stem/progenitor cells (NSCs/NPCs) exhibit store-operated Ca(2+) entry (SOCE) mediated by Ca(2+) release-activated Ca(2+) (CRAC) channels. SOCE in NPCs was blocked by the CRAC channel inhibitors La(3+), BTP2, and 2-APB and Western blots revealed the presence of the canonical CRAC channel proteins STIM1 and Orai1. Knock down of STIM1 or Orai1 significantly diminished SOCE in NPCs, and SOCE was lost in NPCs from transgenic mice lacking Orai1 or STIM1 and in knock-in mice expressing the loss-of-function Orai1 mutant, R93W. Therefore, STIM1 and Orai1 make essential contributions to SOCE in NPCs. SOCE in NPCs was activated by epidermal growth factor and acetylcholine, the latter occurring through muscarinic receptors. Activation of SOCE stimulated gene transcription through calcineurin/NFAT (nuclear factor of activated T cells) signaling through a mechanism consistent with local Ca(2+) signaling by Ca(2+) microdomains near CRAC channels. Importantly, suppression or deletion of STIM1 and Orai1 expression significantly attenuated proliferation of embryonic and adult NPCs cultured as neurospheres and, in vivo, in the subventricular zone of adult mice. These findings show that CRAC channels serve as a major route of Ca(2+) entry in NPCs and regulate key effector functions including gene expression and proliferation, indicating that CRAC channels are important regulators of mammalian neurogenesis.
Copyright © 2014 the authors 0270-6474/14/349107-17$15.00/0.

Entities:  

Keywords:  CRAC channels; Orai1; STIM1; calcium; progenitor cell; proliferation

Mesh:

Substances:

Year:  2014        PMID: 24990931      PMCID: PMC4078087          DOI: 10.1523/JNEUROSCI.0263-14.2014

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  110 in total

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Authors:  W Zhang; W T Couldwell; H Song; T Takano; J H Lin; M Nedergaard
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7.  Calcium waves propagate through radial glial cells and modulate proliferation in the developing neocortex.

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  55 in total

Review 1.  Store-Operated Calcium Channels.

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3.  Presenilin-1 Delta E9 Mutant Induces STIM1-Driven Store-Operated Calcium Channel Hyperactivation in Hippocampal Neurons.

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Review 7.  Calcium release-activated calcium channels and pain.

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9.  Metformin Targets Mitochondrial Electron Transport to Reduce Air-Pollution-Induced Thrombosis.

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Journal:  Cell Metab       Date:  2018-10-11       Impact factor: 27.287

10.  Calcium release-activated calcium (CRAC) channels mediate the β(2)-adrenergic regulation of Na,K-ATPase.

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