Cargando…

β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload

Excessive β-adrenergic stimulation and tachycardia are potent triggers of cardiac remodeling; however, their exact cellular effects remain elusive. Here, we sought to determine the potency of β-adrenergic stimulation and tachycardia to modulate gene expression profiles of cardiomyocytes. Using neona...

Descripción completa

Detalles Bibliográficos
Autores principales: Matzer, Ingrid, Voglhuber, Julia, Kiessling, Mara, Djalinac, Nataša, Trummer-Herbst, Viktoria, Mabotuwana, Nishani, Rech, Lavinia, Holzer, Michael, Sossalla, Samuel, Rainer, Peter P., Zirlik, Andreas, Ljubojevic-Holzer, Senka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9313457/
https://www.ncbi.nlm.nih.gov/pubmed/35884952
http://dx.doi.org/10.3390/biomedicines10071648
_version_ 1784754084539006976
author Matzer, Ingrid
Voglhuber, Julia
Kiessling, Mara
Djalinac, Nataša
Trummer-Herbst, Viktoria
Mabotuwana, Nishani
Rech, Lavinia
Holzer, Michael
Sossalla, Samuel
Rainer, Peter P.
Zirlik, Andreas
Ljubojevic-Holzer, Senka
author_facet Matzer, Ingrid
Voglhuber, Julia
Kiessling, Mara
Djalinac, Nataša
Trummer-Herbst, Viktoria
Mabotuwana, Nishani
Rech, Lavinia
Holzer, Michael
Sossalla, Samuel
Rainer, Peter P.
Zirlik, Andreas
Ljubojevic-Holzer, Senka
author_sort Matzer, Ingrid
collection PubMed
description Excessive β-adrenergic stimulation and tachycardia are potent triggers of cardiac remodeling; however, their exact cellular effects remain elusive. Here, we sought to determine the potency of β-adrenergic stimulation and tachycardia to modulate gene expression profiles of cardiomyocytes. Using neonatal rat ventricular cardiomyocytes, we showed that tachycardia caused a significant upregulation of sodium–calcium exchanger (NCX) and the activation of calcium/calmodulin-dependent kinase II (CaMKII) in the nuclear region. Acute isoprenaline treatment ameliorated NCX-upregulation and potentiated CaMKII activity, specifically on the sarcoplasmic reticulum and the nuclear envelope, while preincubation with the β-blocker propranolol abolished both isoprenaline-mediated effects. On a transcriptional level, screening for hypertrophy-related genes revealed tachycardia-induced upregulation of interleukin-6 receptor (IL6R). While isoprenaline prevented this effect, pharmacological intervention with propranolol or NCX inhibitor ORM-10962 demonstrated that simultaneous CaMKII activation on the subcellular Ca(2+) stores and prevention of NCX upregulation are needed for keeping IL6R activation low. Finally, using hypertensive Dahl salt-sensitive rats, we showed that blunted β-adrenergic signaling is associated with NCX upregulation and enhanced IL6R signaling. We therefore propose a previously unrecognized protective role of β-adrenergic signaling, which is compromised in cardiac pathologies, in preventing IL6R overactivation under increased workload. A better understanding of these processes may contribute to refinement of therapeutic options for patients receiving β-blockers.
format Online
Article
Text
id pubmed-9313457
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-93134572022-07-26 β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload Matzer, Ingrid Voglhuber, Julia Kiessling, Mara Djalinac, Nataša Trummer-Herbst, Viktoria Mabotuwana, Nishani Rech, Lavinia Holzer, Michael Sossalla, Samuel Rainer, Peter P. Zirlik, Andreas Ljubojevic-Holzer, Senka Biomedicines Article Excessive β-adrenergic stimulation and tachycardia are potent triggers of cardiac remodeling; however, their exact cellular effects remain elusive. Here, we sought to determine the potency of β-adrenergic stimulation and tachycardia to modulate gene expression profiles of cardiomyocytes. Using neonatal rat ventricular cardiomyocytes, we showed that tachycardia caused a significant upregulation of sodium–calcium exchanger (NCX) and the activation of calcium/calmodulin-dependent kinase II (CaMKII) in the nuclear region. Acute isoprenaline treatment ameliorated NCX-upregulation and potentiated CaMKII activity, specifically on the sarcoplasmic reticulum and the nuclear envelope, while preincubation with the β-blocker propranolol abolished both isoprenaline-mediated effects. On a transcriptional level, screening for hypertrophy-related genes revealed tachycardia-induced upregulation of interleukin-6 receptor (IL6R). While isoprenaline prevented this effect, pharmacological intervention with propranolol or NCX inhibitor ORM-10962 demonstrated that simultaneous CaMKII activation on the subcellular Ca(2+) stores and prevention of NCX upregulation are needed for keeping IL6R activation low. Finally, using hypertensive Dahl salt-sensitive rats, we showed that blunted β-adrenergic signaling is associated with NCX upregulation and enhanced IL6R signaling. We therefore propose a previously unrecognized protective role of β-adrenergic signaling, which is compromised in cardiac pathologies, in preventing IL6R overactivation under increased workload. A better understanding of these processes may contribute to refinement of therapeutic options for patients receiving β-blockers. MDPI 2022-07-08 /pmc/articles/PMC9313457/ /pubmed/35884952 http://dx.doi.org/10.3390/biomedicines10071648 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Matzer, Ingrid
Voglhuber, Julia
Kiessling, Mara
Djalinac, Nataša
Trummer-Herbst, Viktoria
Mabotuwana, Nishani
Rech, Lavinia
Holzer, Michael
Sossalla, Samuel
Rainer, Peter P.
Zirlik, Andreas
Ljubojevic-Holzer, Senka
β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload
title β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload
title_full β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload
title_fullStr β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload
title_full_unstemmed β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload
title_short β-Adrenergic Receptor Stimulation Maintains NCX-CaMKII Axis and Prevents Overactivation of IL6R-Signaling in Cardiomyocytes upon Increased Workload
title_sort β-adrenergic receptor stimulation maintains ncx-camkii axis and prevents overactivation of il6r-signaling in cardiomyocytes upon increased workload
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9313457/
https://www.ncbi.nlm.nih.gov/pubmed/35884952
http://dx.doi.org/10.3390/biomedicines10071648
work_keys_str_mv AT matzeringrid badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT voglhuberjulia badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT kiesslingmara badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT djalinacnatasa badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT trummerherbstviktoria badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT mabotuwananishani badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT rechlavinia badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT holzermichael badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT sossallasamuel badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT rainerpeterp badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT zirlikandreas badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload
AT ljubojevicholzersenka badrenergicreceptorstimulationmaintainsncxcamkiiaxisandpreventsoveractivationofil6rsignalingincardiomyocytesuponincreasedworkload