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TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury

Recent work shows that cooling protection after mouse cardiac arrest and cardiomyocyte ischemia is mediated by Akt activation. The PI3K p85 subunit can either augment or inhibit Akt activation depending on its binding to p110 or PTEN respectively. To further clarify the role of PI3K p85 in cardiopro...

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Autores principales: Zhu, Xiangdong, Shao, Zuo-Hui, Li, Changqing, Li, Jing, Zhong, Qiang, Learoyd, Jonathan, Meliton, Angelo, Meliton, Lucille, Leff, Alan R., Vanden Hoek, Terry L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3994094/
https://www.ncbi.nlm.nih.gov/pubmed/24752319
http://dx.doi.org/10.1371/journal.pone.0095622
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author Zhu, Xiangdong
Shao, Zuo-Hui
Li, Changqing
Li, Jing
Zhong, Qiang
Learoyd, Jonathan
Meliton, Angelo
Meliton, Lucille
Leff, Alan R.
Vanden Hoek, Terry L.
author_facet Zhu, Xiangdong
Shao, Zuo-Hui
Li, Changqing
Li, Jing
Zhong, Qiang
Learoyd, Jonathan
Meliton, Angelo
Meliton, Lucille
Leff, Alan R.
Vanden Hoek, Terry L.
author_sort Zhu, Xiangdong
collection PubMed
description Recent work shows that cooling protection after mouse cardiac arrest and cardiomyocyte ischemia is mediated by Akt activation. The PI3K p85 subunit can either augment or inhibit Akt activation depending on its binding to p110 or PTEN respectively. To further clarify the role of PI3K p85 in cardioprotection, we studied novel TAT-p85 fusion proteins that selectively inhibit PI3K p85 binding. We hypothesized that TAT fused p85 lacking the PTEN binding site (TAT-ΔPTEN p85) would enhance Akt phosphorylation to afford cardioprotection. Conversely, TAT fused p85 lacking the p110 binding site (TAT-Δp110p85) would decrease Akt phosphorylation and abrogate cardioprotection. Microscopy and Western blot analysis demonstrated that TAT fusion protein was transduced into cardiomyocytes within 5 min and remained more than 2 h. Inhibition of PI3K/Akt by TAT-Δp110 p85 significantly increased cell death from 44.6±2.7% to 92.5±3.4% after simulated ischemia and reperfusion. By contrast, PTEN inhibition using TAT-ΔPTEN p85 decreased cell death to 11.9±5.3%, a similar level of cardioprotection seen with past cooling studies. Additional studies with the small molecule PTEN inhibitor VO-OHpic confirmed that PTEN inhibition was highly protective against cell death induced by ischemia and reperfusion. We conclude that blockade of p85-PTEN interaction and PTEN inhibition may be promising strategies for rescuing the heart from ischemia and reperfusion injury.
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spelling pubmed-39940942014-04-25 TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury Zhu, Xiangdong Shao, Zuo-Hui Li, Changqing Li, Jing Zhong, Qiang Learoyd, Jonathan Meliton, Angelo Meliton, Lucille Leff, Alan R. Vanden Hoek, Terry L. PLoS One Research Article Recent work shows that cooling protection after mouse cardiac arrest and cardiomyocyte ischemia is mediated by Akt activation. The PI3K p85 subunit can either augment or inhibit Akt activation depending on its binding to p110 or PTEN respectively. To further clarify the role of PI3K p85 in cardioprotection, we studied novel TAT-p85 fusion proteins that selectively inhibit PI3K p85 binding. We hypothesized that TAT fused p85 lacking the PTEN binding site (TAT-ΔPTEN p85) would enhance Akt phosphorylation to afford cardioprotection. Conversely, TAT fused p85 lacking the p110 binding site (TAT-Δp110p85) would decrease Akt phosphorylation and abrogate cardioprotection. Microscopy and Western blot analysis demonstrated that TAT fusion protein was transduced into cardiomyocytes within 5 min and remained more than 2 h. Inhibition of PI3K/Akt by TAT-Δp110 p85 significantly increased cell death from 44.6±2.7% to 92.5±3.4% after simulated ischemia and reperfusion. By contrast, PTEN inhibition using TAT-ΔPTEN p85 decreased cell death to 11.9±5.3%, a similar level of cardioprotection seen with past cooling studies. Additional studies with the small molecule PTEN inhibitor VO-OHpic confirmed that PTEN inhibition was highly protective against cell death induced by ischemia and reperfusion. We conclude that blockade of p85-PTEN interaction and PTEN inhibition may be promising strategies for rescuing the heart from ischemia and reperfusion injury. Public Library of Science 2014-04-21 /pmc/articles/PMC3994094/ /pubmed/24752319 http://dx.doi.org/10.1371/journal.pone.0095622 Text en © 2014 Zhu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zhu, Xiangdong
Shao, Zuo-Hui
Li, Changqing
Li, Jing
Zhong, Qiang
Learoyd, Jonathan
Meliton, Angelo
Meliton, Lucille
Leff, Alan R.
Vanden Hoek, Terry L.
TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury
title TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury
title_full TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury
title_fullStr TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury
title_full_unstemmed TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury
title_short TAT-Protein Blockade during Ischemia/Reperfusion Reveals Critical Role for p85 PI3K-PTEN Interaction in Cardiomyocyte Injury
title_sort tat-protein blockade during ischemia/reperfusion reveals critical role for p85 pi3k-pten interaction in cardiomyocyte injury
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3994094/
https://www.ncbi.nlm.nih.gov/pubmed/24752319
http://dx.doi.org/10.1371/journal.pone.0095622
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