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Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D

The giant protein titin performs structure-preserving functions in the sarcomere and is important for the passive stiffness (F(passive)) of cardiomyocytes. Protein kinase D (PKD) enzymes play crucial roles in regulating myocardial contraction, hypertrophy, and remodeling. PKD phosphorylates myofilam...

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Autores principales: Herwig, Melissa, Kolijn, Detmar, Lódi, Mária, Hölper, Soraya, Kovács, Árpád, Papp, Zoltán, Jaquet, Kornelia, Haldenwang, Peter, Dos Remedios, Cris, Reusch, Peter H., Mügge, Andreas, Krüger, Marcus, Fielitz, Jens, Linke, Wolfgang A., Hamdani, Nazha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7174613/
https://www.ncbi.nlm.nih.gov/pubmed/32351396
http://dx.doi.org/10.3389/fphys.2020.00240
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author Herwig, Melissa
Kolijn, Detmar
Lódi, Mária
Hölper, Soraya
Kovács, Árpád
Papp, Zoltán
Jaquet, Kornelia
Haldenwang, Peter
Dos Remedios, Cris
Reusch, Peter H.
Mügge, Andreas
Krüger, Marcus
Fielitz, Jens
Linke, Wolfgang A.
Hamdani, Nazha
author_facet Herwig, Melissa
Kolijn, Detmar
Lódi, Mária
Hölper, Soraya
Kovács, Árpád
Papp, Zoltán
Jaquet, Kornelia
Haldenwang, Peter
Dos Remedios, Cris
Reusch, Peter H.
Mügge, Andreas
Krüger, Marcus
Fielitz, Jens
Linke, Wolfgang A.
Hamdani, Nazha
author_sort Herwig, Melissa
collection PubMed
description The giant protein titin performs structure-preserving functions in the sarcomere and is important for the passive stiffness (F(passive)) of cardiomyocytes. Protein kinase D (PKD) enzymes play crucial roles in regulating myocardial contraction, hypertrophy, and remodeling. PKD phosphorylates myofilament proteins, but it is not known whether the giant protein titin is also a PKD substrate. Here, we aimed to determine whether PKD phosphorylates titin and thereby modulates cardiomyocyte F(passive) in normal and failing myocardium. The phosphorylation of titin was assessed in cardiomyocyte-specific PKD knock-out mice (cKO) and human hearts using immunoblotting with a phosphoserine/threonine and a phosphosite-specific titin antibody. PKD-dependent site-specific titin phosphorylation in vivo was quantified by mass spectrometry using stable isotope labeling by amino acids in cell culture (SILAC) of SILAC-labeled mouse heart protein lysates that were mixed with lysates isolated from hearts of either wild-type control (WT) or cKO mice. F(passive) of single permeabilized cardiomyocytes was recorded before and after PKD and HSP27 administration. All-titin phosphorylation was reduced in cKO compared to WT hearts. Multiple conserved PKD-dependent phosphosites were identified within the Z-disk, A-band and M-band regions of titin by quantitative mass spectrometry, and many PKD-dependent phosphosites detected in the elastic titin I-band region were significantly decreased in cKO. Analysis of titin site-specific phosphorylation showed unaltered or upregulated phosphorylation in cKO compared to matched WT hearts. F(passive) was elevated in cKO compared to WT cardiomyocytes and PKD administration lowered F(passive) of WT and cKO cardiomyocytes. Cardiomyocytes from hypertrophic cardiomyopathy (HCM) patients showed higher F(passive) compared to control hearts and significantly lower F(passive) after PKD treatment. In addition, we found higher phosphorylation at CaMKII-dependent titin sites in HCM compared to control hearts. Expression and phosphorylation of HSP27, a substrate of PKD, were elevated in HCM hearts, which was associated with increased PKD expression and phosphorylation. The relocalization of HSP27 in HCM away from the sarcomeric Z-disk and I-band suggested that HSP27 failed to exert its protective action on titin extensibility. This protection could, however, be restored by administration of HSP27, which significantly reduced F(passive) in HCM cardiomyocytes. These findings establish a previously unknown role for PKDin regulating diastolic passive properties of healthy and diseased hearts.
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spelling pubmed-71746132020-04-29 Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D Herwig, Melissa Kolijn, Detmar Lódi, Mária Hölper, Soraya Kovács, Árpád Papp, Zoltán Jaquet, Kornelia Haldenwang, Peter Dos Remedios, Cris Reusch, Peter H. Mügge, Andreas Krüger, Marcus Fielitz, Jens Linke, Wolfgang A. Hamdani, Nazha Front Physiol Physiology The giant protein titin performs structure-preserving functions in the sarcomere and is important for the passive stiffness (F(passive)) of cardiomyocytes. Protein kinase D (PKD) enzymes play crucial roles in regulating myocardial contraction, hypertrophy, and remodeling. PKD phosphorylates myofilament proteins, but it is not known whether the giant protein titin is also a PKD substrate. Here, we aimed to determine whether PKD phosphorylates titin and thereby modulates cardiomyocyte F(passive) in normal and failing myocardium. The phosphorylation of titin was assessed in cardiomyocyte-specific PKD knock-out mice (cKO) and human hearts using immunoblotting with a phosphoserine/threonine and a phosphosite-specific titin antibody. PKD-dependent site-specific titin phosphorylation in vivo was quantified by mass spectrometry using stable isotope labeling by amino acids in cell culture (SILAC) of SILAC-labeled mouse heart protein lysates that were mixed with lysates isolated from hearts of either wild-type control (WT) or cKO mice. F(passive) of single permeabilized cardiomyocytes was recorded before and after PKD and HSP27 administration. All-titin phosphorylation was reduced in cKO compared to WT hearts. Multiple conserved PKD-dependent phosphosites were identified within the Z-disk, A-band and M-band regions of titin by quantitative mass spectrometry, and many PKD-dependent phosphosites detected in the elastic titin I-band region were significantly decreased in cKO. Analysis of titin site-specific phosphorylation showed unaltered or upregulated phosphorylation in cKO compared to matched WT hearts. F(passive) was elevated in cKO compared to WT cardiomyocytes and PKD administration lowered F(passive) of WT and cKO cardiomyocytes. Cardiomyocytes from hypertrophic cardiomyopathy (HCM) patients showed higher F(passive) compared to control hearts and significantly lower F(passive) after PKD treatment. In addition, we found higher phosphorylation at CaMKII-dependent titin sites in HCM compared to control hearts. Expression and phosphorylation of HSP27, a substrate of PKD, were elevated in HCM hearts, which was associated with increased PKD expression and phosphorylation. The relocalization of HSP27 in HCM away from the sarcomeric Z-disk and I-band suggested that HSP27 failed to exert its protective action on titin extensibility. This protection could, however, be restored by administration of HSP27, which significantly reduced F(passive) in HCM cardiomyocytes. These findings establish a previously unknown role for PKDin regulating diastolic passive properties of healthy and diseased hearts. Frontiers Media S.A. 2020-04-15 /pmc/articles/PMC7174613/ /pubmed/32351396 http://dx.doi.org/10.3389/fphys.2020.00240 Text en Copyright © 2020 Herwig, Kolijn, Lódi, Hölper, Kovács, Papp, Jaquet, Haldenwang, Dos Remedios, Reusch, Mügge, Krüger, Fielitz, Linke and Hamdani. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Herwig, Melissa
Kolijn, Detmar
Lódi, Mária
Hölper, Soraya
Kovács, Árpád
Papp, Zoltán
Jaquet, Kornelia
Haldenwang, Peter
Dos Remedios, Cris
Reusch, Peter H.
Mügge, Andreas
Krüger, Marcus
Fielitz, Jens
Linke, Wolfgang A.
Hamdani, Nazha
Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D
title Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D
title_full Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D
title_fullStr Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D
title_full_unstemmed Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D
title_short Modulation of Titin-Based Stiffness in Hypertrophic Cardiomyopathy via Protein Kinase D
title_sort modulation of titin-based stiffness in hypertrophic cardiomyopathy via protein kinase d
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7174613/
https://www.ncbi.nlm.nih.gov/pubmed/32351396
http://dx.doi.org/10.3389/fphys.2020.00240
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