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β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum

Investigations into the functional modulation of the cardiac Na(+)–Ca(2+) exchanger (NCX) by acute β-adrenoceptor/PKA stimulation have produced conflicting results. Here, we investigated (i) whether or not β-adrenoceptor activation/PKA stimulation activates current in rabbit cardiac myocytes under N...

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Detalles Bibliográficos
Autores principales: Barman, Palash, Choisy, Stéphanie C.M., Hancox, Jules C., James, Andrew F.
Formato: Texto
Lenguaje:English
Publicado: Elsevier 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3092849/
https://www.ncbi.nlm.nih.gov/pubmed/21439639
http://dx.doi.org/10.1016/j.ceca.2011.02.006
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author Barman, Palash
Choisy, Stéphanie C.M.
Hancox, Jules C.
James, Andrew F.
author_facet Barman, Palash
Choisy, Stéphanie C.M.
Hancox, Jules C.
James, Andrew F.
author_sort Barman, Palash
collection PubMed
description Investigations into the functional modulation of the cardiac Na(+)–Ca(2+) exchanger (NCX) by acute β-adrenoceptor/PKA stimulation have produced conflicting results. Here, we investigated (i) whether or not β-adrenoceptor activation/PKA stimulation activates current in rabbit cardiac myocytes under NCX-‘selective’ conditions and (ii) if so, whether a PKA-activated Cl(−)-current may contribute to the apparent modulation of NCX current (I(NCX)). Whole-cell voltage-clamp experiments were conducted at 37 °C on rabbit ventricular and atrial myocytes. The β-adrenoceptor-activated currents both in NCX-‘selective’ and Cl(−)-selective recording conditions were found to be sensitive to 10 mM Ni(2+). In contrast, the PKA-activated Cl(−) current was not sensitive to Ni(2+), when it was activated downstream to the β-adrenoceptors using 10 μM forskolin (an adenylyl cyclase activator). When 10 μM forskolin was applied under NCX-selective recording conditions, the Ni(2+)-sensitive current did not differ between control and forskolin. These findings suggest that in rabbit myocytes: (a) a PKA-activated Cl(−) current contributes to the Ni(2+)-sensitive current activated via β-adrenoceptor stimulation under recording conditions previously considered selective for I(NCX); (b) downstream activation of PKA does not augment Ni(2+)-sensitive I(NCX), when this is measured under conditions where the Ni(2+)-sensitive PKA-activated Cl(−) current is not present.
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spelling pubmed-30928492011-07-12 β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum Barman, Palash Choisy, Stéphanie C.M. Hancox, Jules C. James, Andrew F. Cell Calcium Article Investigations into the functional modulation of the cardiac Na(+)–Ca(2+) exchanger (NCX) by acute β-adrenoceptor/PKA stimulation have produced conflicting results. Here, we investigated (i) whether or not β-adrenoceptor activation/PKA stimulation activates current in rabbit cardiac myocytes under NCX-‘selective’ conditions and (ii) if so, whether a PKA-activated Cl(−)-current may contribute to the apparent modulation of NCX current (I(NCX)). Whole-cell voltage-clamp experiments were conducted at 37 °C on rabbit ventricular and atrial myocytes. The β-adrenoceptor-activated currents both in NCX-‘selective’ and Cl(−)-selective recording conditions were found to be sensitive to 10 mM Ni(2+). In contrast, the PKA-activated Cl(−) current was not sensitive to Ni(2+), when it was activated downstream to the β-adrenoceptors using 10 μM forskolin (an adenylyl cyclase activator). When 10 μM forskolin was applied under NCX-selective recording conditions, the Ni(2+)-sensitive current did not differ between control and forskolin. These findings suggest that in rabbit myocytes: (a) a PKA-activated Cl(−) current contributes to the Ni(2+)-sensitive current activated via β-adrenoceptor stimulation under recording conditions previously considered selective for I(NCX); (b) downstream activation of PKA does not augment Ni(2+)-sensitive I(NCX), when this is measured under conditions where the Ni(2+)-sensitive PKA-activated Cl(−) current is not present. Elsevier 2011-04 /pmc/articles/PMC3092849/ /pubmed/21439639 http://dx.doi.org/10.1016/j.ceca.2011.02.006 Text en © 2011 Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Article
Barman, Palash
Choisy, Stéphanie C.M.
Hancox, Jules C.
James, Andrew F.
β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum
title β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum
title_full β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum
title_fullStr β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum
title_full_unstemmed β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum
title_short β-Adrenoceptor/PKA-stimulation, Na(+)–Ca(2+) exchange and PKA-activated Cl(−) currents in rabbit cardiomyocytes: A conundrum
title_sort β-adrenoceptor/pka-stimulation, na(+)–ca(2+) exchange and pka-activated cl(−) currents in rabbit cardiomyocytes: a conundrum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3092849/
https://www.ncbi.nlm.nih.gov/pubmed/21439639
http://dx.doi.org/10.1016/j.ceca.2011.02.006
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