Cargando…
Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA)
Gene expression in skeletal muscle of older individuals may reflect compensatory adaptations in response to oxidative damage that preserve tissue integrity and maintain function. Identifying associations between oxidative stress response gene expression patterns and mitochondrial function, physical...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Cold Spring Harbor Laboratory
2023
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659517/ https://www.ncbi.nlm.nih.gov/pubmed/37986804 http://dx.doi.org/10.1101/2023.11.05.23298108 |
_version_ | 1785148331611127808 |
---|---|
author | Tranah, Gregory J Barnes, Haley N Cawthon, Peggy M Coen, Paul M Esser, Karyn A Hepple, Russell T Huo, Zhiguang Kramer, Philip A Toledo, Frederico G. S. Evans, Daniel S Cummings, Steven R |
author_facet | Tranah, Gregory J Barnes, Haley N Cawthon, Peggy M Coen, Paul M Esser, Karyn A Hepple, Russell T Huo, Zhiguang Kramer, Philip A Toledo, Frederico G. S. Evans, Daniel S Cummings, Steven R |
author_sort | Tranah, Gregory J |
collection | PubMed |
description | Gene expression in skeletal muscle of older individuals may reflect compensatory adaptations in response to oxidative damage that preserve tissue integrity and maintain function. Identifying associations between oxidative stress response gene expression patterns and mitochondrial function, physical performance, and muscle mass in older individuals would further our knowledge of mechanisms related to managing molecular damage that may be targeted to preserve physical resilience. To characterize expression patterns of genes responsible for the oxidative stress response, RNA was extracted and sequenced from skeletal muscle biopsies collected from 575 participants (≥70 years old) from the Study of Muscle, Mobility and Aging. Expression levels of twenty-one protein coding RNAs related to the oxidative stress response were analyzed in relation to six phenotypic measures, including: maximal mitochondrial respiration from muscle biopsies (Max OXPHOS), physical performance (VO(2) peak, 400m walking speed, and leg strength), and muscle size (thigh muscle volume and whole-body D3Cr muscle mass). The mRNA level of the oxidative stress response genes most consistently associated across outcomes are preferentially expressed within the mitochondria. Higher expression of mRNAs that encode generally mitochondria located proteins SOD2, TRX2, PRX3, PRX5, and GRX2 were associated with higher levels of mitochondrial respiration and VO(2) peak. In addition, greater SOD2, PRX3, and GRX2 expression was associated with higher physical performance and muscle size. Identifying specific mechanisms associated with high functioning across multiple performance and physical domains may lead to targeted antioxidant interventions with greater impacts on mobility and independence. |
format | Online Article Text |
id | pubmed-10659517 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Cold Spring Harbor Laboratory |
record_format | MEDLINE/PubMed |
spelling | pubmed-106595172023-11-20 Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) Tranah, Gregory J Barnes, Haley N Cawthon, Peggy M Coen, Paul M Esser, Karyn A Hepple, Russell T Huo, Zhiguang Kramer, Philip A Toledo, Frederico G. S. Evans, Daniel S Cummings, Steven R medRxiv Article Gene expression in skeletal muscle of older individuals may reflect compensatory adaptations in response to oxidative damage that preserve tissue integrity and maintain function. Identifying associations between oxidative stress response gene expression patterns and mitochondrial function, physical performance, and muscle mass in older individuals would further our knowledge of mechanisms related to managing molecular damage that may be targeted to preserve physical resilience. To characterize expression patterns of genes responsible for the oxidative stress response, RNA was extracted and sequenced from skeletal muscle biopsies collected from 575 participants (≥70 years old) from the Study of Muscle, Mobility and Aging. Expression levels of twenty-one protein coding RNAs related to the oxidative stress response were analyzed in relation to six phenotypic measures, including: maximal mitochondrial respiration from muscle biopsies (Max OXPHOS), physical performance (VO(2) peak, 400m walking speed, and leg strength), and muscle size (thigh muscle volume and whole-body D3Cr muscle mass). The mRNA level of the oxidative stress response genes most consistently associated across outcomes are preferentially expressed within the mitochondria. Higher expression of mRNAs that encode generally mitochondria located proteins SOD2, TRX2, PRX3, PRX5, and GRX2 were associated with higher levels of mitochondrial respiration and VO(2) peak. In addition, greater SOD2, PRX3, and GRX2 expression was associated with higher physical performance and muscle size. Identifying specific mechanisms associated with high functioning across multiple performance and physical domains may lead to targeted antioxidant interventions with greater impacts on mobility and independence. Cold Spring Harbor Laboratory 2023-11-06 /pmc/articles/PMC10659517/ /pubmed/37986804 http://dx.doi.org/10.1101/2023.11.05.23298108 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which allows reusers to copy and distribute the material in any medium or format in unadapted form only, for noncommercial purposes only, and only so long as attribution is given to the creator. |
spellingShingle | Article Tranah, Gregory J Barnes, Haley N Cawthon, Peggy M Coen, Paul M Esser, Karyn A Hepple, Russell T Huo, Zhiguang Kramer, Philip A Toledo, Frederico G. S. Evans, Daniel S Cummings, Steven R Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) |
title | Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) |
title_full | Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) |
title_fullStr | Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) |
title_full_unstemmed | Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) |
title_short | Expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the Study of Muscle, Mobility and Aging (SOMMA) |
title_sort | expression of mitochondrial oxidative stress response genes in muscle is associated with mitochondrial respiration, physical performance, and muscle mass in the study of muscle, mobility and aging (somma) |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659517/ https://www.ncbi.nlm.nih.gov/pubmed/37986804 http://dx.doi.org/10.1101/2023.11.05.23298108 |
work_keys_str_mv | AT tranahgregoryj expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT barneshaleyn expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT cawthonpeggym expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT coenpaulm expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT esserkaryna expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT hepplerussellt expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT huozhiguang expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT kramerphilipa expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT toledofredericogs expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT evansdaniels expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma AT cummingsstevenr expressionofmitochondrialoxidativestressresponsegenesinmuscleisassociatedwithmitochondrialrespirationphysicalperformanceandmusclemassinthestudyofmusclemobilityandagingsomma |