Literature DB >> 24180497

Reactive oxygen species regulation of autophagy in skeletal muscles.

Mashrur Rahman1, Mahroo Mofarrahi, Arnold S Kristof, Bernard Nkengfac, Sharon Harel, Sabah N A Hussain.   

Abstract

OBJECTIVE: To evaluate the effects of physiological levels of mitochondrial-derived reactive oxygen species (ROS) on skeletal muscle autophagy, a proteolytic pathway designed to regulate contractile and myofilament homeostasis and to recycle long-lived proteins and damaged organelles.
RESULTS: Basal levels of autophagy and autophagy triggered by 1.5 to 4 h of acute nutrient deprivation, rapamycin treatment, or leucine deprivation were measured in differentiated C2C12 myotubes using long-lived protein degradation assays, LC3B lipidation, autophagy-related gene expression, and electron microscopy. Preincubation with the general antioxidants tempol (superoxide dismutase mimic) and N-acetyl cysteine (NAC) or the mitochondria-specific antioxidants mito-tempol and SS31 significantly decreased the rates of long-lived protein degradation and LC3B flux and blocked the induction of autophagy-related gene expression. Mitochondrial ROS levels significantly increased in response to acute nutrient deprivation and rapamycin treatment. Mito-tempol and tempol blocked this response. Antioxidants decreased AMP-activated protein kinase (AMPK) phosphorylation by 40% and significantly increased protein kinase B (AKT) phosphorylation, but exerted no effects on mTORC1-dependent ULK1 phosphorylation on Ser(555). NAC significantly decreased basal LC3B autophagic flux in skeletal muscles of mice. INNOVATION: We report for the first time that endogenous ROS promote skeletal muscle autophagy at the basal level and in response to acute nutrient starvation and mTORC1 inhibition. We also report for the first time that mitochondrial-derived ROS promote skeletal muscle autophagy and that this effect is mediated, in part, through regulation of autophagosome initiation and AKT inhibition.
CONCLUSION: Mitochondrial-derived ROS promote skeletal muscle autophagy and this effect is mediated, in part, through activation of AMPK and inhibition of AKT.

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Year:  2014        PMID: 24180497     DOI: 10.1089/ars.2013.5410

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


  41 in total

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Review 2.  The regulation of autophagy during exercise in skeletal muscle.

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3.  Arsenite Targets the RING Finger Domain of Rbx1 E3 Ubiquitin Ligase to Inhibit Proteasome-Mediated Degradation of Nrf2.

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Review 4.  Molecular strategies for targeting antioxidants to mitochondria: therapeutic implications.

Authors:  Nadezda Apostolova; Victor M Victor
Journal:  Antioxid Redox Signal       Date:  2015-03-10       Impact factor: 8.401

5.  Thyroid hormone induction of mitochondrial activity is coupled to mitophagy via ROS-AMPK-ULK1 signaling.

Authors:  Rohit A Sinha; Brijesh K Singh; Jin Zhou; Yajun Wu; Benjamin L Farah; Kenji Ohba; Ronny Lesmana; Jessica Gooding; Boon-Huat Bay; Paul M Yen
Journal:  Autophagy       Date:  2015       Impact factor: 16.016

6.  Melatonin protects against chronic stress-induced oxidative meiotic defects in mice MII oocytes by regulating SIRT1.

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7.  Lactate regulates autophagy through ROS-mediated activation of ERK1/2/m-TOR/p-70S6K pathway in skeletal muscle.

Authors:  Rohollah Nikooie; Daruosh Moflehi; Samira Zand
Journal:  J Cell Commun Signal       Date:  2021-01-04       Impact factor: 5.782

Review 8.  Redox Control of Skeletal Muscle Regeneration.

Authors:  Emmeran Le Moal; Vincent Pialoux; Gaëtan Juban; Carole Groussard; Hassane Zouhal; Bénédicte Chazaud; Rémi Mounier
Journal:  Antioxid Redox Signal       Date:  2017-02-06       Impact factor: 8.401

9.  Contractile activity attenuates autophagy suppression and reverses mitochondrial defects in skeletal muscle cells.

Authors:  Alexa Parousis; Heather N Carter; Claudia Tran; Avigail T Erlich; Zahra S Mesbah Moosavi; Marion Pauly; David A Hood
Journal:  Autophagy       Date:  2018-08-04       Impact factor: 16.016

Review 10.  Redox regulation of autophagy in skeletal muscle.

Authors:  George G Rodney; Rituraj Pal; Reem Abo-Zahrah
Journal:  Free Radic Biol Med       Date:  2016-05-14       Impact factor: 7.376

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