Literature DB >> 20345409

Regulation of skeletal muscle mitochondrial function: genes to proteins.

I R Lanza1, K Sreekumaran Nair.   

Abstract

The impact of ageing on mitochondrial function and the deterministic role of mitochondria on senescence continue to be topics of vigorous debate. Many studies report that skeletal muscle mitochondrial content and function are reduced with ageing and metabolic diseases associated with insulin resistance. However, an accumulating body of literature suggests that physical inactivity typical of ageing may be a more important determinant of mitochondrial function than chronological age, per se. Reports of age-related declines in mitochondrial function have spawned a vast body of literature devoted to understanding the underlying mechanisms. These mechanisms include decreased abundance of mtDNA, reduced mRNA levels, as well as decreased synthesis and expression of mitochondrial proteins, ultimately resulting in decreased function of the whole organelle. Effective therapies to prevent, reverse or delay the onset of the aforementioned mitochondrial changes, regardless of their inevitability or precise underlying causes, require an intimate understanding of the processes that regulate mitochondrial biogenesis, which necessitates the coordinated regulation of nuclear and mitochondrial genomes. Herein we review the current thinking on regulation of mitochondrial biogenesis by transcription factors and transcriptional co-activators and the role of hormones and exercise in initiating this process. We review how exercise may help preserve mitochondrial content and functionality across the lifespan, and how physical inactivity is emerging as a major determinant of many age-associated changes at the level of the mitochondrion. We also review evidence that some mitochondrial changes with ageing are independent of exercise or physical activity and appear to be inevitable consequences of old age.

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Year:  2010        PMID: 20345409      PMCID: PMC3070482          DOI: 10.1111/j.1748-1716.2010.02124.x

Source DB:  PubMed          Journal:  Acta Physiol (Oxf)        ISSN: 1748-1708            Impact factor:   6.311


  149 in total

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2.  Response of mitochondria of different types of skeletal muscle to thyrotoxicosis.

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3.  Effect of T(3)-induced hyperthyroidism on mitochondrial and cytoplasmic protein synthesis rates in oxidative and glycolytic tissues in rats.

Authors:  Kevin R Short; J Nygren; K Sreekumaran Nair
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4.  Respiratory capacity of white, red, and intermediate muscle: adaptative response to exercise.

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5.  Kinetics of the firefly luciferase catalyzed reactions.

Authors:  M DeLuca; W D McElroy
Journal:  Biochemistry       Date:  1974-02-26       Impact factor: 3.162

6.  Training and physiological aging in man.

Authors:  S Robinson; D B Dill; J C Ross; R D Robinson; J A Wagner; S P Tzankoff
Journal:  Fed Proc       Date:  1973-05

7.  Oxidative stress and mitochondrial impairment can be separated from lipofuscin accumulation in aged human skeletal muscle.

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10.  Patients with type 2 diabetes have normal mitochondrial function in skeletal muscle.

Authors:  R Boushel; E Gnaiger; P Schjerling; M Skovbro; R Kraunsøe; F Dela
Journal:  Diabetologia       Date:  2007-02-15       Impact factor: 10.122

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  28 in total

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2.  Thyroid hormone activation by type 2 deiodinase mediates exercise-induced peroxisome proliferator-activated receptor-γ coactivator-1α expression in skeletal muscle.

Authors:  Barbara M L C Bocco; Ruy A N Louzada; Diego H S Silvestre; Maria C S Santos; Elena Anne-Palmer; Igor F Rangel; Sherine Abdalla; Andrea C Ferreira; Miriam O Ribeiro; Balázs Gereben; Denise P Carvalho; Antonio C Bianco; João P Werneck-de-Castro
Journal:  J Physiol       Date:  2016-08-18       Impact factor: 5.182

3.  Light-emitting diode therapy (photobiomodulation) effects on oxygen uptake and cardiac output dynamics during moderate exercise transitions: a randomized, crossover, double-blind, and placebo-controlled study.

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4.  Adaptive Modifications of Muscle Phenotype in High-Altitude Deer Mice Are Associated with Evolved Changes in Gene Regulation.

Authors:  Graham R Scott; Todd S Elogio; Mikaela A Lui; Jay F Storz; Zachary A Cheviron
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5.  Skeletal muscle mitochondrial DNA copy number and mitochondrial DNA deletion mutation frequency as predictors of physical performance in older men and women.

Authors:  Allen Herbst; Steven J Prior; Cathy C Lee; Judd M Aiken; Debbie McKenzie; Austin Hoang; Nianjun Liu; Xiwei Chen; Pengcheng Xun; David B Allison; Jonathan Wanagat
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6.  Influence of dietary nitrate supplementation on physiological and muscle metabolic adaptations to sprint interval training.

Authors:  Christopher Thompson; Lee J Wylie; Jamie R Blackwell; Jonathan Fulford; Matthew I Black; James Kelly; Sinead T J McDonagh; James Carter; Stephen J Bailey; Anni Vanhatalo; Andrew M Jones
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7.  Vitamin C and E supplementation hampers cellular adaptation to endurance training in humans: a double-blind, randomised, controlled trial.

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8.  Autophagy plays a role in skeletal muscle mitochondrial biogenesis in an endurance exercise-trained condition.

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Review 9.  Psychological Stress and Mitochondria: A Conceptual Framework.

Authors:  Martin Picard; Bruce S McEwen
Journal:  Psychosom Med       Date:  2018 Feb/Mar       Impact factor: 4.312

Review 10.  Exercise training and peripheral arterial disease.

Authors:  Tara L Haas; Pamela G Lloyd; Hsiao-Tung Yang; Ronald L Terjung
Journal:  Compr Physiol       Date:  2012-10       Impact factor: 9.090

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