Literature DB >> 20847309

Loss of PI3Kγ enhances cAMP-dependent MMP remodeling of the myocardial N-cadherin adhesion complexes and extracellular matrix in response to early biomechanical stress.

Danny Guo1, Zamaneh Kassiri, Ratnadeep Basu, Fung L Chow, Vijay Kandalam, Federico Damilano, Wenbin Liang, Seigo Izumo, Emilio Hirsch, Josef M Penninger, Peter H Backx, Gavin Y Oudit.   

Abstract

RATIONALE: Mechanotransduction and the response to biomechanical stress is a fundamental response in heart disease. Loss of phosphoinositide 3-kinase (PI3K)γ, the isoform linked to G protein-coupled receptor signaling, results in increased myocardial contractility, but the response to pressure overload is controversial.
OBJECTIVE: To characterize molecular and cellular responses of the PI3Kγ knockout (KO) mice to biomechanical stress. METHODS AND
RESULTS: In response to pressure overload, PI3KγKO mice deteriorated at an accelerated rate compared with wild-type mice despite increased basal myocardial contractility. These functional responses were associated with compromised phosphorylation of Akt and GSK-3α. In contrast, isolated single cardiomyocytes from banded PI3KγKO mice maintained their hypercontractility, suggesting compromised interaction with the extracellular matrix as the primary defect in the banded PI3KγKO mice. β-Adrenergic stimulation increased cAMP levels with increased phosphorylation of CREB, leading to increased expression of cAMP-responsive matrix metalloproteinases (MMPs), MMP2, MT1-MMP, and MMP13 in cardiomyocytes and cardiofibroblasts. Loss of PI3Kγ resulted in increased cAMP levels with increased expression of MMP2, MT1-MMP, and MMP13 and increased MMP2 activation and collagenase activity in response to biomechanical stress. Selective loss of N-cadherin from the adhesion complexes in the PI3KγKO mice resulted in reduced cell adhesion. The β-blocker propranolol prevented the upregulation of MMPs, whereas MMP inhibition prevented the adverse remodeling with both therapies, preventing the functional deterioration in banded PI3KγKO mice. In banded wild-type mice, long-term propranolol prevented the adverse remodeling and systolic dysfunction with preservation of the N-cadherin levels.
CONCLUSIONS: The enhanced propensity to develop heart failure in the PI3KγKO mice is attributable to a cAMP-dependent upregulation of MMP expression and activity and disorganization of the N-cadherin/β-catenin cell adhesion complex. β-Blocker therapy prevents these changes thereby providing a novel mechanism of action for these drugs.

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Year:  2010        PMID: 20847309     DOI: 10.1161/CIRCRESAHA.110.229054

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  27 in total

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4.  Enhanced susceptibility to biomechanical stress in ACE2 null mice is prevented by loss of the p47(phox) NADPH oxidase subunit.

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6.  Loss of angiotensin-converting enzyme-2 exacerbates diabetic cardiovascular complications and leads to systolic and vascular dysfunction: a critical role of the angiotensin II/AT1 receptor axis.

Authors:  Vaibhav B Patel; Sreedhar Bodiga; Ratnadeep Basu; Subhash K Das; Wang Wang; Zuocheng Wang; Jennifer Lo; Maria B Grant; JiuChang Zhong; Zamaneh Kassiri; Gavin Y Oudit
Journal:  Circ Res       Date:  2012-04-03       Impact factor: 17.367

7.  Urinary matrix metalloproteinases-2/9 in healthy infants and haemangioma patients prior to and during propranolol therapy.

Authors:  C J Kleber; A Spiess; J B Kleber; U Hinz; S Holland-Cunz; J Weiss
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Authors:  Ying H Shen; Lin Zhang; Pingping Ren; Mary T Nguyen; Sili Zou; Darrell Wu; Xing Li Wang; Joseph S Coselli; Scott A LeMaire
Journal:  Circ Res       Date:  2012-12-18       Impact factor: 17.367

Review 9.  A pathway and network review on beta-adrenoceptor signaling and beta blockers in cardiac remodeling.

Authors:  Jihong Yang; Yufeng Liu; Xiaohui Fan; Zheng Li; Yiyu Cheng
Journal:  Heart Fail Rev       Date:  2014-11       Impact factor: 4.214

10.  Testosterone delays vascular smooth muscle cell senescence and inhibits collagen synthesis via the Gas6/Axl signaling pathway.

Authors:  Yan-qing Chen; Jing Zhao; Cheng-wei Jin; Yi-hui Li; Meng-xiong Tang; Zhi-hao Wang; Wei Zhang; Yun Zhang; Li Li; Ming Zhong
Journal:  Age (Dordr)       Date:  2016-05-20
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