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Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3

The prognosis and treatment outcomes of heart failure (HF) patients rely heavily on disease etiology, yet the majority of underlying signaling mechanisms are complex and not fully elucidated. Phosphorylation is a major point of protein regulation with rapid and profound effects on the function and a...

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Autores principales: Reitz, Cristine J., Tavassoli, Marjan, Kim, Da Hye, Shah, Saumya, Lakin, Robert, Teng, Allen C. T., Zhou, Yu-Qing, Li, Wenping, Hadipour-Lakmehsari, Sina, Backx, Peter H., Emili, Andrew, Oudit, Gavin Y., Kuzmanov, Uros, Gramolini, Anthony O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175742/
https://www.ncbi.nlm.nih.gov/pubmed/37126683
http://dx.doi.org/10.1073/pnas.2212118120
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author Reitz, Cristine J.
Tavassoli, Marjan
Kim, Da Hye
Shah, Saumya
Lakin, Robert
Teng, Allen C. T.
Zhou, Yu-Qing
Li, Wenping
Hadipour-Lakmehsari, Sina
Backx, Peter H.
Emili, Andrew
Oudit, Gavin Y.
Kuzmanov, Uros
Gramolini, Anthony O.
author_facet Reitz, Cristine J.
Tavassoli, Marjan
Kim, Da Hye
Shah, Saumya
Lakin, Robert
Teng, Allen C. T.
Zhou, Yu-Qing
Li, Wenping
Hadipour-Lakmehsari, Sina
Backx, Peter H.
Emili, Andrew
Oudit, Gavin Y.
Kuzmanov, Uros
Gramolini, Anthony O.
author_sort Reitz, Cristine J.
collection PubMed
description The prognosis and treatment outcomes of heart failure (HF) patients rely heavily on disease etiology, yet the majority of underlying signaling mechanisms are complex and not fully elucidated. Phosphorylation is a major point of protein regulation with rapid and profound effects on the function and activity of protein networks. Currently, there is a lack of comprehensive proteomic and phosphoproteomic studies examining cardiac tissue from HF patients with either dilated dilated cardiomyopathy (DCM) or ischemic cardiomyopathy (ICM). Here, we used a combined proteomic and phosphoproteomic approach to identify and quantify more than 5,000 total proteins with greater than 13,000 corresponding phosphorylation sites across explanted left ventricle (LV) tissue samples, including HF patients with DCM vs. nonfailing controls (NFC), and left ventricular infarct vs. noninfarct, and periinfarct vs. noninfarct regions of HF patients with ICM. Each pair-wise comparison revealed unique global proteomic and phosphoproteomic profiles with both shared and etiology-specific perturbations. With this approach, we identified a DCM-associated hyperphosphorylation cluster in the cardiomyocyte intercalated disc (ICD) protein, αT-catenin (CTNNA3). We demonstrate using both ex vivo isolated cardiomyocytes and in vivo using an AAV9-mediated overexpression mouse model, that CTNNA3 phosphorylation at these residues plays a key role in maintaining protein localization at the cardiomyocyte ICD to regulate conductance and cell–cell adhesion. Collectively, this integrative proteomic/phosphoproteomic approach identifies region- and etiology-associated signaling pathways in human HF and describes a role for CTNNA3 phosphorylation in the pathophysiology of DCM.
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spelling pubmed-101757422023-11-01 Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3 Reitz, Cristine J. Tavassoli, Marjan Kim, Da Hye Shah, Saumya Lakin, Robert Teng, Allen C. T. Zhou, Yu-Qing Li, Wenping Hadipour-Lakmehsari, Sina Backx, Peter H. Emili, Andrew Oudit, Gavin Y. Kuzmanov, Uros Gramolini, Anthony O. Proc Natl Acad Sci U S A Biological Sciences The prognosis and treatment outcomes of heart failure (HF) patients rely heavily on disease etiology, yet the majority of underlying signaling mechanisms are complex and not fully elucidated. Phosphorylation is a major point of protein regulation with rapid and profound effects on the function and activity of protein networks. Currently, there is a lack of comprehensive proteomic and phosphoproteomic studies examining cardiac tissue from HF patients with either dilated dilated cardiomyopathy (DCM) or ischemic cardiomyopathy (ICM). Here, we used a combined proteomic and phosphoproteomic approach to identify and quantify more than 5,000 total proteins with greater than 13,000 corresponding phosphorylation sites across explanted left ventricle (LV) tissue samples, including HF patients with DCM vs. nonfailing controls (NFC), and left ventricular infarct vs. noninfarct, and periinfarct vs. noninfarct regions of HF patients with ICM. Each pair-wise comparison revealed unique global proteomic and phosphoproteomic profiles with both shared and etiology-specific perturbations. With this approach, we identified a DCM-associated hyperphosphorylation cluster in the cardiomyocyte intercalated disc (ICD) protein, αT-catenin (CTNNA3). We demonstrate using both ex vivo isolated cardiomyocytes and in vivo using an AAV9-mediated overexpression mouse model, that CTNNA3 phosphorylation at these residues plays a key role in maintaining protein localization at the cardiomyocyte ICD to regulate conductance and cell–cell adhesion. Collectively, this integrative proteomic/phosphoproteomic approach identifies region- and etiology-associated signaling pathways in human HF and describes a role for CTNNA3 phosphorylation in the pathophysiology of DCM. National Academy of Sciences 2023-05-01 2023-05-09 /pmc/articles/PMC10175742/ /pubmed/37126683 http://dx.doi.org/10.1073/pnas.2212118120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Reitz, Cristine J.
Tavassoli, Marjan
Kim, Da Hye
Shah, Saumya
Lakin, Robert
Teng, Allen C. T.
Zhou, Yu-Qing
Li, Wenping
Hadipour-Lakmehsari, Sina
Backx, Peter H.
Emili, Andrew
Oudit, Gavin Y.
Kuzmanov, Uros
Gramolini, Anthony O.
Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3
title Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3
title_full Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3
title_fullStr Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3
title_full_unstemmed Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3
title_short Proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of CTNNA3
title_sort proteomics and phosphoproteomics of failing human left ventricle identifies dilated cardiomyopathy-associated phosphorylation of ctnna3
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10175742/
https://www.ncbi.nlm.nih.gov/pubmed/37126683
http://dx.doi.org/10.1073/pnas.2212118120
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