Literature DB >> 24993069

Antioxidant catalase rescues against high fat diet-induced cardiac dysfunction via an IKKβ-AMPK-dependent regulation of autophagy.

Lei Liang1, Xi-Ling Shou1, Hai-Kang Zhao2, Gu-Qun Ren3, Jian-Bang Wang3, Xi-Hui Wang3, Wen-Ting Ai4, Jackie R Maris5, Lindsay K Hueckstaedt5, Ai-Qun Ma6, Yingmei Zhang7.   

Abstract

Autophagy, a conservative degradation process for long-lived and damaged proteins, participates in a variety of biological processes including obesity. However, the precise mechanism of action behind obesity-induced changes in autophagy still remains elusive. This study was designed to examine the role of the antioxidant catalase in high fat diet-induced changes in cardiac geometry and function as well as the underlying mechanism of action involved with a focus on autophagy. Wild-type (WT) and transgenic mice with cardiac overexpression of catalase were fed low or high fat diet for 20 weeks prior to assessment of myocardial geometry and function. High fat diet intake triggered obesity, hyperinsulinemia, and hypertriglyceridemia, the effects of which were unaffected by catalase transgene. Myocardial geometry and function were compromised with fat diet intake as manifested by cardiac hypertrophy, enlarged left ventricular end systolic and diastolic diameters, fractional shortening, cardiomyocyte contractile capacity and intracellular Ca²⁺ mishandling, the effects of which were ameliorated by catalase. High fat diet intake promoted reactive oxygen species production and suppressed autophagy in the heart, the effects of which were attenuated by catalase. High fat diet intake dampened phosphorylation of inhibitor kappa B kinase β(IKKβ), AMP-activated protein kinase (AMPK) and tuberous sclerosis 2 (TSC2) while promoting phosphorylation of mTOR, the effects of which were ablated by catalase. In vitro study revealed that palmitic acid compromised cardiomyocyte autophagy and contractile function in a manner reminiscent of fat diet intake, the effect of which was significantly alleviated by inhibition of IKKβ, activation of AMPK and induction of autophagy. Taken together, our data revealed that the antioxidant catalase counteracts against high fat diet-induced cardiac geometric and functional anomalies possibly via an IKKβ-AMPK-dependent restoration of myocardial autophagy. This article is part of a Special Issue entitled: Autophagy and protein quality control in cardiometabolic diseases.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  AMPK; Autophagy; Cardiomyocyte; Catalase; Fat diet; IKKβ

Mesh:

Substances:

Year:  2014        PMID: 24993069     DOI: 10.1016/j.bbadis.2014.06.027

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  13 in total

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Review 2.  The Role of Mitochondria in Metabolic Syndrome-Associated Cardiomyopathy.

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Review 3.  Nutrient-sensing mTORC1: Integration of metabolic and autophagic signals.

Authors:  Valerie P Tan; Shigeki Miyamoto
Journal:  J Mol Cell Cardiol       Date:  2016-01-07       Impact factor: 5.000

Review 4.  Cardiac ubiquitin ligases: Their role in cardiac metabolism, autophagy, cardioprotection and therapeutic potential.

Authors:  Traci L Parry; Monte S Willis
Journal:  Biochim Biophys Acta       Date:  2016-07-13

5.  Boosting autophagy in the diabetic heart: a translational perspective.

Authors:  Sebastiano Sciarretta; V Subbarao Boppana; Mahaa Umapathi; Giacomo Frati; Junichi Sadoshima
Journal:  Cardiovasc Diagn Ther       Date:  2015-10

6.  Diet Modulates Adipose Tissue Oxidative Stress in a Murine Acute Chagas Model.

Authors:  Janeesh Plakkal Ayyappan; Jyothi F Nagajyothi
Journal:  JSM Atheroscler       Date:  2017-03-21

7.  Deficiency of ataxia-telangiectasia mutated kinase modulates functional and biochemical parameters of the heart in response to Western-type diet.

Authors:  Mary C Wingard; Suman Dalal; Paige L Shook; Rachel Myers; Barbara A Connelly; Douglas P Thewke; Mahipal Singh; Krishna Singh
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8.  Cardiospecific CD36 suppression by lentivirus-mediated RNA interference prevents cardiac hypertrophy and systolic dysfunction in high-fat-diet induced obese mice.

Authors:  Yijie Zhang; Mingwei Bao; Mingyan Dai; Xin Wang; Wenbo He; Tuantuan Tan; Dandan Lin; Wei Wang; Ying Wen; Rui Zhang
Journal:  Cardiovasc Diabetol       Date:  2015-06-03       Impact factor: 9.951

9.  Filtration of Active Components with Antioxidant Activity Based on the Differing Antioxidant Abilities of Schisandrae Sphenantherae Fructus and Schisandrae Chinensis Fructus through UPLC/MS Coupling with Network Pharmacology.

Authors:  Yang Xin; Yang Yang; Kaichen Yu; Haijun Wang
Journal:  Evid Based Complement Alternat Med       Date:  2021-07-21       Impact factor: 2.629

Review 10.  Reactive oxygen species, nutrition, hypoxia and diseases: Problems solved?

Authors:  Agnes Görlach; Elitsa Y Dimova; Andreas Petry; Antonio Martínez-Ruiz; Pablo Hernansanz-Agustín; Anabela P Rolo; Carlos M Palmeira; Thomas Kietzmann
Journal:  Redox Biol       Date:  2015-08-28       Impact factor: 11.799

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