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Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart

BACKGROUND: Myocardial hypoxic-ischemic injury is the cause of significant morbidity and mortality worldwide. The cardiomyocyte response to hypoxic-ischemic injury is known to include changes in cell cycle regulators. The cyclin-dependent kinase inhibitor p57(Kip2 )is involved in cell cycle control,...

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Autores principales: Haley, Sheila A, Zhao, Ting, Zou, Lijun, Klysik, Jan E, Padbury, James F, Kochilas, Lazaros K
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2268709/
https://www.ncbi.nlm.nih.gov/pubmed/18312674
http://dx.doi.org/10.1186/1472-6793-8-4
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author Haley, Sheila A
Zhao, Ting
Zou, Lijun
Klysik, Jan E
Padbury, James F
Kochilas, Lazaros K
author_facet Haley, Sheila A
Zhao, Ting
Zou, Lijun
Klysik, Jan E
Padbury, James F
Kochilas, Lazaros K
author_sort Haley, Sheila A
collection PubMed
description BACKGROUND: Myocardial hypoxic-ischemic injury is the cause of significant morbidity and mortality worldwide. The cardiomyocyte response to hypoxic-ischemic injury is known to include changes in cell cycle regulators. The cyclin-dependent kinase inhibitor p57(Kip2 )is involved in cell cycle control, differentiation, stress signaling and apoptosis. In contrast to other cyclin-dependent kinase inhibitors, p57(Kip2 )expression diminishes during postnatal life and is reactivated in the adult heart under conditions of cardiac stress. Overexpression of p57(Kip2 )has been previously shown to prevent apoptotic cell death in vitro by inhibiting stress-activated kinases. Therefore, we hypothesized that p57(Kip2 )has a protective role in cardiomyocytes under hypoxic conditions. To investigate this hypothesis, we created a transgenic mouse (R26loxpTA-p57(k/+)) that expresses p57(Kip2 )specifically in cardiac tissue under the ventricular cardiomyocyte promoter Mlc2v. RESULTS: Transgenic mice with cardiac specific overexpression of p57(Kip2 )are viable, fertile and normally active and their hearts are morphologically indistinguishable from the control hearts and have similar heart weight/body weight ratio. The baseline functional parameters, including left ventricular systolic pressure (LVSP), left ventricular end diastolic pressure (LVEDP), LVdp/dt(max), heart rate (HR) and rate pressure product (RPR) were not significantly different between the different groups as assessed by the Langendorff perfused heart preparation. However, after subjecting the heart ex vivo to 30 minutes of ischemia-reperfusion injury, the p57(Kip2 )overexpressing hearts demonstrated preserved cardiac function compared to control mice with higher left ventricular developed pressure (63 ± 15 vs 30 ± 6 mmHg, p = 0.05), rate pressure product (22.8 ± 4.86 vs 10.4 ± 2.1 × 10(3)bpm × mmHg, p < 0.05) and coronary flow (3.5 ± 0.5 vs 2.38 ± 0.24 ml/min, p <0.05). CONCLUSION: These data suggest that forced cardiac expression of p57(Kip2 )does not affect myocardial growth, differentiation and baseline function but attenuates injury from ischemia-reperfusion in the adult mouse heart.
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spelling pubmed-22687092008-03-18 Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart Haley, Sheila A Zhao, Ting Zou, Lijun Klysik, Jan E Padbury, James F Kochilas, Lazaros K BMC Physiol Research Article BACKGROUND: Myocardial hypoxic-ischemic injury is the cause of significant morbidity and mortality worldwide. The cardiomyocyte response to hypoxic-ischemic injury is known to include changes in cell cycle regulators. The cyclin-dependent kinase inhibitor p57(Kip2 )is involved in cell cycle control, differentiation, stress signaling and apoptosis. In contrast to other cyclin-dependent kinase inhibitors, p57(Kip2 )expression diminishes during postnatal life and is reactivated in the adult heart under conditions of cardiac stress. Overexpression of p57(Kip2 )has been previously shown to prevent apoptotic cell death in vitro by inhibiting stress-activated kinases. Therefore, we hypothesized that p57(Kip2 )has a protective role in cardiomyocytes under hypoxic conditions. To investigate this hypothesis, we created a transgenic mouse (R26loxpTA-p57(k/+)) that expresses p57(Kip2 )specifically in cardiac tissue under the ventricular cardiomyocyte promoter Mlc2v. RESULTS: Transgenic mice with cardiac specific overexpression of p57(Kip2 )are viable, fertile and normally active and their hearts are morphologically indistinguishable from the control hearts and have similar heart weight/body weight ratio. The baseline functional parameters, including left ventricular systolic pressure (LVSP), left ventricular end diastolic pressure (LVEDP), LVdp/dt(max), heart rate (HR) and rate pressure product (RPR) were not significantly different between the different groups as assessed by the Langendorff perfused heart preparation. However, after subjecting the heart ex vivo to 30 minutes of ischemia-reperfusion injury, the p57(Kip2 )overexpressing hearts demonstrated preserved cardiac function compared to control mice with higher left ventricular developed pressure (63 ± 15 vs 30 ± 6 mmHg, p = 0.05), rate pressure product (22.8 ± 4.86 vs 10.4 ± 2.1 × 10(3)bpm × mmHg, p < 0.05) and coronary flow (3.5 ± 0.5 vs 2.38 ± 0.24 ml/min, p <0.05). CONCLUSION: These data suggest that forced cardiac expression of p57(Kip2 )does not affect myocardial growth, differentiation and baseline function but attenuates injury from ischemia-reperfusion in the adult mouse heart. BioMed Central 2008-02-29 /pmc/articles/PMC2268709/ /pubmed/18312674 http://dx.doi.org/10.1186/1472-6793-8-4 Text en Copyright © 2008 Haley et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Haley, Sheila A
Zhao, Ting
Zou, Lijun
Klysik, Jan E
Padbury, James F
Kochilas, Lazaros K
Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
title Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
title_full Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
title_fullStr Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
title_full_unstemmed Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
title_short Forced expression of the cell cycle inhibitor p57(Kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
title_sort forced expression of the cell cycle inhibitor p57(kip2 )in cardiomyocytes attenuates ischemia-reperfusion injury in the mouse heart
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2268709/
https://www.ncbi.nlm.nih.gov/pubmed/18312674
http://dx.doi.org/10.1186/1472-6793-8-4
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