Literature DB >> 12065663

Adenosine inhibits calcium channel currents via A1 receptors on salamander retinal ganglion cells in a mini-slice preparation.

Xiaolu Sun1, Steven Barnes, William H Baldridge.   

Abstract

The effects of adenosine on high-voltage-activated calcium channel currents in tiger salamander retinal ganglion cells were investigated in a mini-slice preparation. Adenosine produced a concentration-dependent decrease in the amplitude of calcium channel current with a maximum inhibition of 26%. The effects of adenosine on calcium channel current were both time- and voltage-dependent. In cells dialyzed with GTP-gamma-s, adenosine caused a sustained and irreversible inhibition of calcium channel current, suggesting involvement of a GTP-binding protein. The inhibitory effect of adenosine on calcium channel current was blocked by the A1 antagonist 8-cyclopentyltheophylline (DPCPX, 1-10 microm), but not by the A2 antagonist 3-7-dimethyl-1-propargylxanthine (DMPX, 10 microm), and was mimicked by the A1 agonist N6-cyclohexyladenosine (CHA, 1 microm) but not by the A2 agonist 5'-(N-cyclopropyl) carbox-amidoadenosine (CPCA, 1 microm). Adenosine's inhibition of calcium channel current was not affected by the L-type calcium channel blocker nifedipine (5 microm). However, adenosine's inhibition of calcium channel current was reduced to approximately 10% after application of omega-conotoxin GVIA (1 microm), suggesting that adenosine inhibits N-type calcium channels. These results show that adenosine acts on an A1 adenosine receptor subtype via a G protein-coupled pathway to inhibit the component of calcium channel current carried in N-type calcium channels.

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Year:  2002        PMID: 12065663     DOI: 10.1046/j.1471-4159.2002.00832.x

Source DB:  PubMed          Journal:  J Neurochem        ISSN: 0022-3042            Impact factor:   5.372


  14 in total

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Review 2.  Adenosine receptors and caffeine in retinopathy of prematurity.

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3.  A circadian clock and light/dark adaptation differentially regulate adenosine in the mammalian retina.

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4.  Modulation of voltage-gated ion channels in rat retinal ganglion cells mediated by somatostatin receptor subtype 4.

Authors:  Spring R Farrell; Iona D Raymond; Michael Foote; Nicholas C Brecha; Steven Barnes
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5.  Adenosine A1 Receptors Selectively Modulate Oxygen-Induced Retinopathy at the Hyperoxic and Hypoxic Phases by Distinct Cellular Mechanisms.

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6.  Adenosine inhibits voltage-dependent Ca2+ influx in cone photoreceptor terminals of the tiger salamander retina.

Authors:  Salvatore L Stella; Wanda D Hu; Alejandro Vila; Nicholas C Brecha
Journal:  J Neurosci Res       Date:  2007-04       Impact factor: 4.164

7.  Adenosine receptor expression in the adult zebrafish retina.

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Authors:  Claire H Mitchell; Wennan Lu; Huiling Hu; Xiulan Zhang; David Reigada; Mei Zhang
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9.  The P2X(7) receptor in retinal ganglion cells: A neuronal model of pressure-induced damage and protection by a shifting purinergic balance.

Authors:  Claire H Mitchell; Wennan Lu; Huiling Hu; Xiulan Zhang; David Reigada; Mei Zhang
Journal:  Purinergic Signal       Date:  2009-02-25       Impact factor: 3.765

10.  Adenosine-evoked hyperpolarization of retinal ganglion cells is mediated by G-protein-coupled inwardly rectifying K+ and small conductance Ca2+-activated K+ channel activation.

Authors:  Benjamin D Clark; Zeb L Kurth-Nelson; Eric A Newman
Journal:  J Neurosci       Date:  2009-09-09       Impact factor: 6.167

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