Literature DB >> 23784619

TRP channels coordinate ion signalling in astroglia.

Alexei Verkhratsky1, Reno C Reyes, Vladimir Parpura.   

Abstract

Astroglial excitability is based on highly spatio-temporally coordinated fluctuations of intracellular ion concentrations, among which changes in Ca(2+) and Na(+) take the leading role. Intracellular signals mediated by Ca(2+) and Na(+) target numerous molecular cascades that control gene expression, energy production and numerous homeostatic functions of astrocytes. Initiation of Ca(2+) and Na(+) signals relies upon plasmalemmal and intracellular channels that allow fluxes of respective ions down their concentration gradients. Astrocytes express several types of TRP channels of which TRPA1 channels are linked to regulation of functional expression of GABA transporters, whereas TRPV4 channels are activated following osmotic challenges and are up-regulated in ischaemic conditions. Astrocytes also ubiquitously express several isoforms of TRPC channels of which heteromers assembled from TRPC1, 4 and/or 5 subunits that likely act as stretch-activated channels and are linked to store-operated Ca(2+) entry. The TRPC channels mediate large Na(+) fluxes that are associated with the endoplasmic reticulum Ca(2+) signalling machinery and hence coordinate Na(+) and Ca(2+) signalling in astroglia.

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Year:  2014        PMID: 23784619      PMCID: PMC4331456          DOI: 10.1007/112_2013_15

Source DB:  PubMed          Journal:  Rev Physiol Biochem Pharmacol        ISSN: 0303-4240            Impact factor:   5.545


  147 in total

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Review 2.  Capacitative calcium entry revisited.

Authors:  J W Putney
Journal:  Cell Calcium       Date:  1990 Nov-Dec       Impact factor: 6.817

Review 3.  Two sides of the same coin: sodium homeostasis and signaling in astrocytes under physiological and pathophysiological conditions.

Authors:  Christine R Rose; Claudia Karus
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4.  Intracellular sodium homeostasis in rat hippocampal astrocytes.

Authors:  C R Rose; B R Ransom
Journal:  J Physiol       Date:  1996-03-01       Impact factor: 5.182

5.  Aluminum-induced degeneration of astrocytes occurs via apoptosis and results in neuronal death.

Authors:  M B Suárez-Fernández; A B Soldado; A Sanz-Medel; J A Vega; A Novelli; M T Fernández-Sánchez
Journal:  Brain Res       Date:  1999-07-24       Impact factor: 3.252

6.  STIM1 gates TRPC channels, but not Orai1, by electrostatic interaction.

Authors:  Weizhong Zeng; Joseph P Yuan; Min Seuk Kim; Young Jin Choi; Guo N Huang; Paul F Worley; Shmuel Muallem
Journal:  Mol Cell       Date:  2008-11-07       Impact factor: 17.970

Review 7.  Adenosine signaling and function in glial cells.

Authors:  D Boison; J-F Chen; B B Fredholm
Journal:  Cell Death Differ       Date:  2009-09-18       Impact factor: 15.828

8.  STIM1 and Orai1 mediate thrombin-induced Ca(2+) influx in rat cortical astrocytes.

Authors:  Claudia Moreno; Alicia Sampieri; Oscar Vivas; Claudia Peña-Segura; Luis Vaca
Journal:  Cell Calcium       Date:  2012-09-01       Impact factor: 6.817

9.  Inactivation of the glycine transporter 1 gene discloses vital role of glial glycine uptake in glycinergic inhibition.

Authors:  Jesús Gomeza; Swen Hülsmann; Koji Ohno; Volker Eulenburg; Katalin Szöke; Diethelm Richter; Heinrich Betz
Journal:  Neuron       Date:  2003-11-13       Impact factor: 17.173

Review 10.  Regulation of ATP production by mitochondrial Ca(2+).

Authors:  Andrei I Tarasov; Elinor J Griffiths; Guy A Rutter
Journal:  Cell Calcium       Date:  2012-04-12       Impact factor: 6.817

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  27 in total

Review 1.  Translational potential of astrocytes in brain disorders.

Authors:  Alexei Verkhratsky; Luca Steardo; Vladimir Parpura; Vedrana Montana
Journal:  Prog Neurobiol       Date:  2015-09-16       Impact factor: 11.685

2.  P2Y1 Receptor Activation of the TRPV4 Ion Channel Enhances Purinergic Signaling in Satellite Glial Cells.

Authors:  Pradeep Rajasekhar; Daniel P Poole; Wolfgang Liedtke; Nigel W Bunnett; Nicholas A Veldhuis
Journal:  J Biol Chem       Date:  2015-10-16       Impact factor: 5.157

Review 3.  The homeostatic astroglia emerges from evolutionary specialization of neural cells.

Authors:  Alexei Verkhratsky; Maiken Nedergaard
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2016-08-05       Impact factor: 6.237

4.  Subcellular propagation of calcium waves in Müller glia does not require autocrine/paracrine purinergic signaling.

Authors:  Tam T T Phuong; Oleg Yarishkin; David Križaj
Journal:  Channels (Austin)       Date:  2016-05-24       Impact factor: 2.581

Review 5.  Physiology of Astroglia.

Authors:  Alexei Verkhratsky; Maiken Nedergaard
Journal:  Physiol Rev       Date:  2018-01-01       Impact factor: 37.312

6.  Ammonium increases Ca(2+) signalling and up-regulates expression of TRPC1 gene in astrocytes in primary cultures and in the in vivo brain.

Authors:  Chunguang Liang; Ting Du; Jing Zhou; Alexei Verkhratsky; Liang Peng
Journal:  Neurochem Res       Date:  2014-08-12       Impact factor: 3.996

Review 7.  Crosslink between calcium and sodium signalling.

Authors:  Alexei Verkhratsky; Mohamed Trebak; Fabiana Perocchi; Daniel Khananshvili; Israel Sekler
Journal:  Exp Physiol       Date:  2018-01-16       Impact factor: 2.969

Review 8.  New Insights on Astrocyte Ion Channels: Critical for Homeostasis and Neuron-Glia Signaling.

Authors:  Michelle L Olsen; Baljit S Khakh; Serguei N Skatchkov; Min Zhou; C Justin Lee; Nathalie Rouach
Journal:  J Neurosci       Date:  2015-10-14       Impact factor: 6.167

9.  Kidins220/ARMS controls astrocyte calcium signaling and neuron-astrocyte communication.

Authors:  Fanny Jaudon; Martina Chiacchiaretta; Martina Albini; Stefano Ferroni; Fabio Benfenati; Fabrizia Cesca
Journal:  Cell Death Differ       Date:  2019-10-17       Impact factor: 15.828

10.  Store-Operated Calcium Entry in Müller Glia Is Controlled by Synergistic Activation of TRPC and Orai Channels.

Authors:  Tünde Molnár; Oleg Yarishkin; Anthony Iuso; Peter Barabas; Bryan Jones; Robert E Marc; Tam T T Phuong; David Križaj
Journal:  J Neurosci       Date:  2016-03-16       Impact factor: 6.167

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