Literature DB >> 19327038

Autophagy, redox signaling, and ventricular remodeling.

Narasimman Gurusamy1, Dipak K Das.   

Abstract

Autophagy is a catabolic process through which damaged or long-lived proteins, macromolecules, or organelles are recycled by using lysosomal degradation machinery. Although the occurrence of autophagy in several cardiac diseases including ischemic or dilated cardiomyopathy, heart failure, hypertrophy, and during ischemia/reperfusion injury have been reported, the exact role of autophagy in these diseases is not known. Emerging studies indicate that oxidative stress in cellular system could induce autophagy, and oxidatively modified macromolecules and organelles can be selectively removed by autophagy. Mild oxidative stress-induced autophagy could provide the first line of protection against major damage like apoptosis and necrosis. Cardiac-specific loss of Atg5, an autophagic gene involved in the formation of autophagosome, causes cardiac hypertrophy, left ventricular dilation, and contractile dysfunction. Recently, it was revealed that Atg4, another autophagic gene involved in the formation of autophagosomes, is controlled through redox regulation under the condition of starvation-induced autophagy. In this review, we discuss the function of autophagy in association with oxidative stress and redox signaling in the remodeling of cardiac myocardium. Further research is needed to explore the possibilities of redox regulation of other autophagic genes and the role of redox signaling-mediated autophagy in the heart.

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Year:  2009        PMID: 19327038      PMCID: PMC2848474          DOI: 10.1089/ars.2009.2524

Source DB:  PubMed          Journal:  Antioxid Redox Signal        ISSN: 1523-0864            Impact factor:   8.401


  157 in total

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Review 4.  Methods for monitoring autophagy.

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9.  Inhibition of hepatocytic autophagy by adenosine, aminoimidazole-4-carboxamide riboside, and N6-mercaptopurine riboside. Evidence for involvement of amp-activated protein kinase.

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  44 in total

1.  Vitamin D receptor activation protects against myocardial reperfusion injury through inhibition of apoptosis and modulation of autophagy.

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Review 3.  ROS and Autophagy: Interactions and Molecular Regulatory Mechanisms.

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4.  Amyloid β peptides promote autophagy-dependent differentiation of mouse neural stem cells: Aβ-mediated neural differentiation.

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Journal:  Mol Neurobiol       Date:  2013-06-02       Impact factor: 5.590

Review 5.  Host-directed therapeutics for tuberculosis: can we harness the host?

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Journal:  Microbiol Mol Biol Rev       Date:  2013-12       Impact factor: 11.056

6.  Cardioprotection of exercise preconditioning involving heat shock protein 70 and concurrent autophagy: a potential chaperone-assisted selective macroautophagy effect.

Authors:  Yang Yuan; Shan-Shan Pan; Yu-Jun Shen
Journal:  J Physiol Sci       Date:  2016-12-07       Impact factor: 2.781

7.  Angiotensin II and oxidative stress in the failing heart.

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Journal:  Antioxid Redox Signal       Date:  2012-05-03       Impact factor: 8.401

8.  N-acetylcysteine administration prevents nonthyroidal illness syndrome in patients with acute myocardial infarction: a randomized clinical trial.

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Journal:  J Clin Endocrinol Metab       Date:  2014-12       Impact factor: 5.958

9.  Targeting Nrf2 by dihydro-CDDO-trifluoroethyl amide enhances autophagic clearance and viability of β-cells in a setting of oxidative stress.

Authors:  Wenjuan Li; Weiwei Wu; Haibo Song; Fang Wang; Huanjie Li; Li Chen; Yimu Lai; Joseph S Janicki; Keith W Ward; Colin J Meyer; Xing Li Wang; Dongqi Tang; Taixing Cui
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Authors:  Narasimman Gurusamy; Istvan Lekli; Subhendu Mukherjee; Diptarka Ray; Md Kaimul Ahsan; Mihaela Gherghiceanu; Lawrence M Popescu; Dipak K Das
Journal:  Cardiovasc Res       Date:  2009-12-03       Impact factor: 10.787

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