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Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations

Cardiac ryanodine receptor (RyR2) function is modulated by Ca(2+) and Mg(2+). To better characterize Ca(2+) and Mg(2+) binding sites involved in RyR2 regulation, the effects of cytosolic and luminal earth alkaline divalent cations (M(2+): Mg(2+), Ca(2+), Sr(2+), Ba(2+)) were studied on RyR2 from pig...

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Autores principales: Diaz-Sylvester, Paula L., Porta, Maura, Copello, Julio A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3198824/
https://www.ncbi.nlm.nih.gov/pubmed/22039534
http://dx.doi.org/10.1371/journal.pone.0026693
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author Diaz-Sylvester, Paula L.
Porta, Maura
Copello, Julio A.
author_facet Diaz-Sylvester, Paula L.
Porta, Maura
Copello, Julio A.
author_sort Diaz-Sylvester, Paula L.
collection PubMed
description Cardiac ryanodine receptor (RyR2) function is modulated by Ca(2+) and Mg(2+). To better characterize Ca(2+) and Mg(2+) binding sites involved in RyR2 regulation, the effects of cytosolic and luminal earth alkaline divalent cations (M(2+): Mg(2+), Ca(2+), Sr(2+), Ba(2+)) were studied on RyR2 from pig ventricle reconstituted in bilayers. RyR2 were activated by M(2+) binding to high affinity activating sites at the cytosolic channel surface, specific for Ca(2+) or Sr(2+). This activation was interfered by Mg(2+) and Ba(2+) acting at low affinity M(2+)-unspecific binding sites. When testing the effects of luminal M(2+) as current carriers, all M(2+) increased maximal RyR2 open probability (compared to Cs(+)), suggesting the existence of low affinity activating M(2+)-unspecific sites at the luminal surface. Responses to M(2+) vary from channel to channel (heterogeneity). However, with luminal Ba(2+)or Mg(2+), RyR2 were less sensitive to cytosolic Ca(2+) and caffeine-mediated activation, openings were shorter and voltage-dependence was more marked (compared to RyR2 with luminal Ca(2+)or Sr(2+)). Kinetics of RyR2 with mixtures of luminal Ba(2+)/Ca(2+) and additive action of luminal plus cytosolic Ba(2+) or Mg(2+) suggest luminal M(2+) differentially act on luminal sites rather than accessing cytosolic sites through the pore. This suggests the presence of additional luminal activating Ca(2+)/Sr(2+)-specific sites, which stabilize high P(o) mode (less voltage-dependent) and increase RyR2 sensitivity to cytosolic Ca(2+) activation. In summary, RyR2 luminal and cytosolic surfaces have at least two sets of M(2+) binding sites (specific for Ca(2+) and unspecific for Ca(2+)/Mg(2+)) that dynamically modulate channel activity and gating status, depending on SR voltage.
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spelling pubmed-31988242011-10-28 Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations Diaz-Sylvester, Paula L. Porta, Maura Copello, Julio A. PLoS One Research Article Cardiac ryanodine receptor (RyR2) function is modulated by Ca(2+) and Mg(2+). To better characterize Ca(2+) and Mg(2+) binding sites involved in RyR2 regulation, the effects of cytosolic and luminal earth alkaline divalent cations (M(2+): Mg(2+), Ca(2+), Sr(2+), Ba(2+)) were studied on RyR2 from pig ventricle reconstituted in bilayers. RyR2 were activated by M(2+) binding to high affinity activating sites at the cytosolic channel surface, specific for Ca(2+) or Sr(2+). This activation was interfered by Mg(2+) and Ba(2+) acting at low affinity M(2+)-unspecific binding sites. When testing the effects of luminal M(2+) as current carriers, all M(2+) increased maximal RyR2 open probability (compared to Cs(+)), suggesting the existence of low affinity activating M(2+)-unspecific sites at the luminal surface. Responses to M(2+) vary from channel to channel (heterogeneity). However, with luminal Ba(2+)or Mg(2+), RyR2 were less sensitive to cytosolic Ca(2+) and caffeine-mediated activation, openings were shorter and voltage-dependence was more marked (compared to RyR2 with luminal Ca(2+)or Sr(2+)). Kinetics of RyR2 with mixtures of luminal Ba(2+)/Ca(2+) and additive action of luminal plus cytosolic Ba(2+) or Mg(2+) suggest luminal M(2+) differentially act on luminal sites rather than accessing cytosolic sites through the pore. This suggests the presence of additional luminal activating Ca(2+)/Sr(2+)-specific sites, which stabilize high P(o) mode (less voltage-dependent) and increase RyR2 sensitivity to cytosolic Ca(2+) activation. In summary, RyR2 luminal and cytosolic surfaces have at least two sets of M(2+) binding sites (specific for Ca(2+) and unspecific for Ca(2+)/Mg(2+)) that dynamically modulate channel activity and gating status, depending on SR voltage. Public Library of Science 2011-10-21 /pmc/articles/PMC3198824/ /pubmed/22039534 http://dx.doi.org/10.1371/journal.pone.0026693 Text en Diaz-Sylvester et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Diaz-Sylvester, Paula L.
Porta, Maura
Copello, Julio A.
Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations
title Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations
title_full Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations
title_fullStr Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations
title_full_unstemmed Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations
title_short Modulation of Cardiac Ryanodine Receptor Channels by Alkaline Earth Cations
title_sort modulation of cardiac ryanodine receptor channels by alkaline earth cations
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3198824/
https://www.ncbi.nlm.nih.gov/pubmed/22039534
http://dx.doi.org/10.1371/journal.pone.0026693
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