Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.

Impaired sarcoplasmic reticulum calcium cycling and depressed contractility are key characteristics in heart failure. Defects in sarcoplasmic reticulum function are characterized by decreased SERCA2a Ca-transport that is partially attributable to dephosphorylation of its regulator phospholamban by i...

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Main Authors: Tracy J Pritchard, Yoshiaki Kawase, Kobra Haghighi, Ahmad Anjak, Wenfeng Cai, Min Jiang, Persoulla Nicolaou, George Pylar, Ioannis Karakikes, Kleopatra Rapti, Jack Rubinstein, Roger J Hajjar, Evangelia G Kranias
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3846572?pdf=render
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spelling doaj-914668e255514939a6d21b2a33846d2f2020-11-25T02:34:22ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8071710.1371/journal.pone.0080717Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.Tracy J PritchardYoshiaki KawaseKobra HaghighiAhmad AnjakWenfeng CaiMin JiangPersoulla NicolaouGeorge PylarIoannis KarakikesKleopatra RaptiJack RubinsteinRoger J HajjarEvangelia G KraniasImpaired sarcoplasmic reticulum calcium cycling and depressed contractility are key characteristics in heart failure. Defects in sarcoplasmic reticulum function are characterized by decreased SERCA2a Ca-transport that is partially attributable to dephosphorylation of its regulator phospholamban by increased protein phosphatase 1 activity. Inhibition of protein phosphatase 1 through activation of its endogenous inhibitor-1 has been shown to enhance cardiac Ca-handling and contractility as well as protect from pathological stress remodeling in young mice. In this study, we assessed the long-term effects of inducible expression of constitutively active inhibitor-1 in the adult heart and followed function and remodeling through the aging process, up to 20 months. Mice with inhibitor-1 had normal survival and similar function to WTs. There was no overt remodeling as evidenced by measures of left ventricular end-systolic and diastolic diameters and posterior wall dimensions, heart weight to tibia length ratio, and histology. Higher phosphorylation of phospholamban at both Ser16 and Thr17 was maintained in aged hearts with active inhibitor-1, potentially offsetting the effects of elevated Ser2815-phosphorylation in ryanodine receptor, as there were no increases in arrhythmias under stress conditions in 20-month old mice. Furthermore, long-term expression of active inhibitor-1 via recombinant adeno-associated virus type 9 gene transfer in rats with pressure-overload induced heart failure improved function and prevented remodeling, associated with increased phosphorylation of phospholamban at Ser16 and Thr17. Thus, chronic inhibition of protein phosphatase 1, through increases in active inhibitor-1, does not accelerate age-related cardiomyopathy and gene transfer of this molecule in vivo improves function and halts remodeling in the long term.http://europepmc.org/articles/PMC3846572?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Tracy J Pritchard
Yoshiaki Kawase
Kobra Haghighi
Ahmad Anjak
Wenfeng Cai
Min Jiang
Persoulla Nicolaou
George Pylar
Ioannis Karakikes
Kleopatra Rapti
Jack Rubinstein
Roger J Hajjar
Evangelia G Kranias
spellingShingle Tracy J Pritchard
Yoshiaki Kawase
Kobra Haghighi
Ahmad Anjak
Wenfeng Cai
Min Jiang
Persoulla Nicolaou
George Pylar
Ioannis Karakikes
Kleopatra Rapti
Jack Rubinstein
Roger J Hajjar
Evangelia G Kranias
Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
PLoS ONE
author_facet Tracy J Pritchard
Yoshiaki Kawase
Kobra Haghighi
Ahmad Anjak
Wenfeng Cai
Min Jiang
Persoulla Nicolaou
George Pylar
Ioannis Karakikes
Kleopatra Rapti
Jack Rubinstein
Roger J Hajjar
Evangelia G Kranias
author_sort Tracy J Pritchard
title Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
title_short Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
title_full Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
title_fullStr Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
title_full_unstemmed Active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
title_sort active inhibitor-1 maintains protein hyper-phosphorylation in aging hearts and halts remodeling in failing hearts.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Impaired sarcoplasmic reticulum calcium cycling and depressed contractility are key characteristics in heart failure. Defects in sarcoplasmic reticulum function are characterized by decreased SERCA2a Ca-transport that is partially attributable to dephosphorylation of its regulator phospholamban by increased protein phosphatase 1 activity. Inhibition of protein phosphatase 1 through activation of its endogenous inhibitor-1 has been shown to enhance cardiac Ca-handling and contractility as well as protect from pathological stress remodeling in young mice. In this study, we assessed the long-term effects of inducible expression of constitutively active inhibitor-1 in the adult heart and followed function and remodeling through the aging process, up to 20 months. Mice with inhibitor-1 had normal survival and similar function to WTs. There was no overt remodeling as evidenced by measures of left ventricular end-systolic and diastolic diameters and posterior wall dimensions, heart weight to tibia length ratio, and histology. Higher phosphorylation of phospholamban at both Ser16 and Thr17 was maintained in aged hearts with active inhibitor-1, potentially offsetting the effects of elevated Ser2815-phosphorylation in ryanodine receptor, as there were no increases in arrhythmias under stress conditions in 20-month old mice. Furthermore, long-term expression of active inhibitor-1 via recombinant adeno-associated virus type 9 gene transfer in rats with pressure-overload induced heart failure improved function and prevented remodeling, associated with increased phosphorylation of phospholamban at Ser16 and Thr17. Thus, chronic inhibition of protein phosphatase 1, through increases in active inhibitor-1, does not accelerate age-related cardiomyopathy and gene transfer of this molecule in vivo improves function and halts remodeling in the long term.
url http://europepmc.org/articles/PMC3846572?pdf=render
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