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Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis

Phospholamban (PLN), a key modulator of Ca(2+)-homeostasis, inhibits sarcoplasmic reticulum (SR) calcium-ATPase (SERCA2a) and regulates cardiac contractility. The human PLN mutation R14del has been identified in arrhythmogenic cardiomyopathy patients worldwide and is currently extensively investigat...

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Autores principales: Vafiadaki, Elizabeth, Haghighi, Kobra, Arvanitis, Demetrios A., Kranias, Evangelia G., Sanoudou, Despina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266971/
https://www.ncbi.nlm.nih.gov/pubmed/35805951
http://dx.doi.org/10.3390/ijms23136947
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author Vafiadaki, Elizabeth
Haghighi, Kobra
Arvanitis, Demetrios A.
Kranias, Evangelia G.
Sanoudou, Despina
author_facet Vafiadaki, Elizabeth
Haghighi, Kobra
Arvanitis, Demetrios A.
Kranias, Evangelia G.
Sanoudou, Despina
author_sort Vafiadaki, Elizabeth
collection PubMed
description Phospholamban (PLN), a key modulator of Ca(2+)-homeostasis, inhibits sarcoplasmic reticulum (SR) calcium-ATPase (SERCA2a) and regulates cardiac contractility. The human PLN mutation R14del has been identified in arrhythmogenic cardiomyopathy patients worldwide and is currently extensively investigated. In search of the molecular mechanisms mediating the pathological phenotype, we examined PLN-R14del associations to known PLN-interacting partners. We determined that PLN-R14del interactions to key Ca(2+)-handling proteins SERCA2a and HS-1-associated protein X-1 (HAX-1) were enhanced, indicating the super-inhibition of SERCA2a’s Ca(2+)-affinity. Additionally, histidine-rich calcium binding protein (HRC) binding to SERCA2a was increased, suggesting the inhibition of SERCA2a maximal velocity. As phosphorylation relieves the inhibitory effect of PLN on SERCA2a activity, we examined the impact of phosphorylation on the PLN-R14del/SERCA2a interaction. Contrary to PLN-WT, phosphorylation did not affect PLN-R14del binding to SERCA2a, due to a lack of Ser-16 phosphorylation in PLN-R14del. No changes were observed in the subcellular distribution of PLN-R14del or its co-localization to SERCA2a. However, in silico predictions suggest structural perturbations in PLN-R14del that could impact its binding and function. Our findings reveal for the first time that by increased binding to SERCA2a and HAX-1, PLN-R14del acts as an enhanced inhibitor of SERCA2a, causing a cascade of molecular events contributing to impaired Ca(2+)-homeostasis and arrhythmogenesis. Relieving SERCA2a super-inhibition could offer a promising therapeutic approach for PLN-R14del patients.
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spelling pubmed-92669712022-07-09 Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis Vafiadaki, Elizabeth Haghighi, Kobra Arvanitis, Demetrios A. Kranias, Evangelia G. Sanoudou, Despina Int J Mol Sci Article Phospholamban (PLN), a key modulator of Ca(2+)-homeostasis, inhibits sarcoplasmic reticulum (SR) calcium-ATPase (SERCA2a) and regulates cardiac contractility. The human PLN mutation R14del has been identified in arrhythmogenic cardiomyopathy patients worldwide and is currently extensively investigated. In search of the molecular mechanisms mediating the pathological phenotype, we examined PLN-R14del associations to known PLN-interacting partners. We determined that PLN-R14del interactions to key Ca(2+)-handling proteins SERCA2a and HS-1-associated protein X-1 (HAX-1) were enhanced, indicating the super-inhibition of SERCA2a’s Ca(2+)-affinity. Additionally, histidine-rich calcium binding protein (HRC) binding to SERCA2a was increased, suggesting the inhibition of SERCA2a maximal velocity. As phosphorylation relieves the inhibitory effect of PLN on SERCA2a activity, we examined the impact of phosphorylation on the PLN-R14del/SERCA2a interaction. Contrary to PLN-WT, phosphorylation did not affect PLN-R14del binding to SERCA2a, due to a lack of Ser-16 phosphorylation in PLN-R14del. No changes were observed in the subcellular distribution of PLN-R14del or its co-localization to SERCA2a. However, in silico predictions suggest structural perturbations in PLN-R14del that could impact its binding and function. Our findings reveal for the first time that by increased binding to SERCA2a and HAX-1, PLN-R14del acts as an enhanced inhibitor of SERCA2a, causing a cascade of molecular events contributing to impaired Ca(2+)-homeostasis and arrhythmogenesis. Relieving SERCA2a super-inhibition could offer a promising therapeutic approach for PLN-R14del patients. MDPI 2022-06-22 /pmc/articles/PMC9266971/ /pubmed/35805951 http://dx.doi.org/10.3390/ijms23136947 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
Vafiadaki, Elizabeth
Haghighi, Kobra
Arvanitis, Demetrios A.
Kranias, Evangelia G.
Sanoudou, Despina
Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis
title Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis
title_full Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis
title_fullStr Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis
title_full_unstemmed Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis
title_short Aberrant PLN-R14del Protein Interactions Intensify SERCA2a Inhibition, Driving Impaired Ca(2+) Handling and Arrhythmogenesis
title_sort aberrant pln-r14del protein interactions intensify serca2a inhibition, driving impaired ca(2+) handling and arrhythmogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9266971/
https://www.ncbi.nlm.nih.gov/pubmed/35805951
http://dx.doi.org/10.3390/ijms23136947
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