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Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)

Oxidative stress is considered a contributor to declining muscle function and mobility during aging; however, the underlying molecular mechanisms remain poorly described. We hypothesized that greater levels of cysteine (Cys) oxidation on muscle proteins are associated with decreased measures of mobi...

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Autores principales: Day, Nicholas J., Kelly, Shane S., Lui, Li-Yung, Mansfield, Tyler A., Gaffrey, Matthew J., Trejo, Jesse B., Sagendorf, Tyler J., Attah, Kwame, Moore, Ronald J., Douglas, Collin M., Newman, Anne B., Kritchevsky, Stephen B., Kramer, Philip A., Marcinek, David J., Coen, Paul M., Goodpaster, Bret H., Hepple, Russell T., Cawthon, Peggy M., Petyuk, Vladislav A., Esser, Karyn A., Qian, Wei-Jun, Cummings, Steven R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659491/
https://www.ncbi.nlm.nih.gov/pubmed/37986748
http://dx.doi.org/10.1101/2023.11.07.23298224
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author Day, Nicholas J.
Kelly, Shane S.
Lui, Li-Yung
Mansfield, Tyler A.
Gaffrey, Matthew J.
Trejo, Jesse B.
Sagendorf, Tyler J.
Attah, Kwame
Moore, Ronald J.
Douglas, Collin M.
Newman, Anne B.
Kritchevsky, Stephen B.
Kramer, Philip A.
Marcinek, David J.
Coen, Paul M.
Goodpaster, Bret H.
Hepple, Russell T.
Cawthon, Peggy M.
Petyuk, Vladislav A.
Esser, Karyn A.
Qian, Wei-Jun
Cummings, Steven R.
author_facet Day, Nicholas J.
Kelly, Shane S.
Lui, Li-Yung
Mansfield, Tyler A.
Gaffrey, Matthew J.
Trejo, Jesse B.
Sagendorf, Tyler J.
Attah, Kwame
Moore, Ronald J.
Douglas, Collin M.
Newman, Anne B.
Kritchevsky, Stephen B.
Kramer, Philip A.
Marcinek, David J.
Coen, Paul M.
Goodpaster, Bret H.
Hepple, Russell T.
Cawthon, Peggy M.
Petyuk, Vladislav A.
Esser, Karyn A.
Qian, Wei-Jun
Cummings, Steven R.
author_sort Day, Nicholas J.
collection PubMed
description Oxidative stress is considered a contributor to declining muscle function and mobility during aging; however, the underlying molecular mechanisms remain poorly described. We hypothesized that greater levels of cysteine (Cys) oxidation on muscle proteins are associated with decreased measures of mobility. Herein, we applied a novel redox proteomics approach to measure reversible protein Cys oxidation in vastus lateralis muscle biopsies collected from 56 subjects in the Study of Muscle, Mobility and Aging (SOMMA), a community-based cohort study of individuals aged 70 years and older. We tested whether levels of Cys oxidation on key muscle proteins involved in muscle structure and contraction were associated with muscle function (leg power and strength), walking speed, and fitness (VO(2) peak on cardiopulmonary exercise testing) using linear regression models adjusted for age, sex, and body weight. Higher oxidation levels of select nebulin Cys sites were associated with lower VO(2) peak, while greater oxidation of myomesin-1, myomesin-2, and nebulin Cys sites was associated with slower walking speed. Higher oxidation of Cys sites in key proteins such as myomesin-2, alpha-actinin-2, and skeletal muscle alpha-actin were associated with lower leg power and strength. We also observed an unexpected correlation (r = 0.48) between a higher oxidation level of 8 Cys sites in alpha-actinin-3 and stronger leg power. Despite this observation, the results generally support the hypothesis that Cys oxidation of muscle proteins impair muscle power and strength, walking speed, and cardiopulmonary fitness with aging.
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spelling pubmed-106594912023-11-20 Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA) Day, Nicholas J. Kelly, Shane S. Lui, Li-Yung Mansfield, Tyler A. Gaffrey, Matthew J. Trejo, Jesse B. Sagendorf, Tyler J. Attah, Kwame Moore, Ronald J. Douglas, Collin M. Newman, Anne B. Kritchevsky, Stephen B. Kramer, Philip A. Marcinek, David J. Coen, Paul M. Goodpaster, Bret H. Hepple, Russell T. Cawthon, Peggy M. Petyuk, Vladislav A. Esser, Karyn A. Qian, Wei-Jun Cummings, Steven R. medRxiv Article Oxidative stress is considered a contributor to declining muscle function and mobility during aging; however, the underlying molecular mechanisms remain poorly described. We hypothesized that greater levels of cysteine (Cys) oxidation on muscle proteins are associated with decreased measures of mobility. Herein, we applied a novel redox proteomics approach to measure reversible protein Cys oxidation in vastus lateralis muscle biopsies collected from 56 subjects in the Study of Muscle, Mobility and Aging (SOMMA), a community-based cohort study of individuals aged 70 years and older. We tested whether levels of Cys oxidation on key muscle proteins involved in muscle structure and contraction were associated with muscle function (leg power and strength), walking speed, and fitness (VO(2) peak on cardiopulmonary exercise testing) using linear regression models adjusted for age, sex, and body weight. Higher oxidation levels of select nebulin Cys sites were associated with lower VO(2) peak, while greater oxidation of myomesin-1, myomesin-2, and nebulin Cys sites was associated with slower walking speed. Higher oxidation of Cys sites in key proteins such as myomesin-2, alpha-actinin-2, and skeletal muscle alpha-actin were associated with lower leg power and strength. We also observed an unexpected correlation (r = 0.48) between a higher oxidation level of 8 Cys sites in alpha-actinin-3 and stronger leg power. Despite this observation, the results generally support the hypothesis that Cys oxidation of muscle proteins impair muscle power and strength, walking speed, and cardiopulmonary fitness with aging. Cold Spring Harbor Laboratory 2023-11-08 /pmc/articles/PMC10659491/ /pubmed/37986748 http://dx.doi.org/10.1101/2023.11.07.23298224 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
Day, Nicholas J.
Kelly, Shane S.
Lui, Li-Yung
Mansfield, Tyler A.
Gaffrey, Matthew J.
Trejo, Jesse B.
Sagendorf, Tyler J.
Attah, Kwame
Moore, Ronald J.
Douglas, Collin M.
Newman, Anne B.
Kritchevsky, Stephen B.
Kramer, Philip A.
Marcinek, David J.
Coen, Paul M.
Goodpaster, Bret H.
Hepple, Russell T.
Cawthon, Peggy M.
Petyuk, Vladislav A.
Esser, Karyn A.
Qian, Wei-Jun
Cummings, Steven R.
Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)
title Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)
title_full Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)
title_fullStr Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)
title_full_unstemmed Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)
title_short Signatures of Cysteine Oxidation on Muscle Structural and Contractile Proteins Are Associated with Physical Performance and Muscle Function in Older Adults: Study of Muscle, Mobility and Aging (SOMMA)
title_sort signatures of cysteine oxidation on muscle structural and contractile proteins are associated with physical performance and muscle function in older adults: study of muscle, mobility and aging (somma)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10659491/
https://www.ncbi.nlm.nih.gov/pubmed/37986748
http://dx.doi.org/10.1101/2023.11.07.23298224
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