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Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts

Protein quality control mechanisms decline during the process of cardiac aging. This enables the accumulation of protein aggregates and damaged organelles that contribute to age‐associated cardiac dysfunction. Macroautophagy is the process by which post‐mitotic cells such as cardiomyocytes clear def...

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Autores principales: Cho, Jae Min, Park, Seul‐Ki, Ghosh, Rajeshwary, Ly, Kellsey, Ramous, Caroline, Thompson, Lauren, Hansen, Michele, Mattera, Maria Sara de Lima Coutinho, Pires, Karla Maria, Ferhat, Maroua, Mookherjee, Sohom, Whitehead, Kevin J., Carter, Kandis, Buffolo, Márcio, Boudina, Sihem, Symons, J. David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8520717/
https://www.ncbi.nlm.nih.gov/pubmed/34554626
http://dx.doi.org/10.1111/acel.13467
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author Cho, Jae Min
Park, Seul‐Ki
Ghosh, Rajeshwary
Ly, Kellsey
Ramous, Caroline
Thompson, Lauren
Hansen, Michele
Mattera, Maria Sara de Lima Coutinho
Pires, Karla Maria
Ferhat, Maroua
Mookherjee, Sohom
Whitehead, Kevin J.
Carter, Kandis
Buffolo, Márcio
Boudina, Sihem
Symons, J. David
author_facet Cho, Jae Min
Park, Seul‐Ki
Ghosh, Rajeshwary
Ly, Kellsey
Ramous, Caroline
Thompson, Lauren
Hansen, Michele
Mattera, Maria Sara de Lima Coutinho
Pires, Karla Maria
Ferhat, Maroua
Mookherjee, Sohom
Whitehead, Kevin J.
Carter, Kandis
Buffolo, Márcio
Boudina, Sihem
Symons, J. David
author_sort Cho, Jae Min
collection PubMed
description Protein quality control mechanisms decline during the process of cardiac aging. This enables the accumulation of protein aggregates and damaged organelles that contribute to age‐associated cardiac dysfunction. Macroautophagy is the process by which post‐mitotic cells such as cardiomyocytes clear defective proteins and organelles. We hypothesized that late‐in‐life exercise training improves autophagy, protein aggregate clearance, and function that is otherwise dysregulated in hearts from old vs. adult mice. As expected, 24‐month‐old male C57BL/6J mice (old) exhibited repressed autophagosome formation and protein aggregate accumulation in the heart, systolic and diastolic dysfunction, and reduced exercise capacity vs. 8‐month‐old (adult) mice (all p < 0.05). To investigate the influence of late‐in‐life exercise training, additional cohorts of 21‐month‐old mice did (old‐ETR) or did not (old‐SED) complete a 3‐month progressive resistance treadmill running program. Body composition, exercise capacity, and soleus muscle citrate synthase activity improved in old‐ETR vs. old‐SED mice at 24 months (all p < 0.05). Importantly, protein expression of autophagy markers indicate trafficking of the autophagosome to the lysosome increased, protein aggregate clearance improved, and overall function was enhanced (all p < 0.05) in hearts from old‐ETR vs. old‐SED mice. These data provide the first evidence that a physiological intervention initiated late‐in‐life improves autophagic flux, protein aggregate clearance, and contractile performance in mouse hearts.
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spelling pubmed-85207172021-10-25 Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts Cho, Jae Min Park, Seul‐Ki Ghosh, Rajeshwary Ly, Kellsey Ramous, Caroline Thompson, Lauren Hansen, Michele Mattera, Maria Sara de Lima Coutinho Pires, Karla Maria Ferhat, Maroua Mookherjee, Sohom Whitehead, Kevin J. Carter, Kandis Buffolo, Márcio Boudina, Sihem Symons, J. David Aging Cell Original Papers Protein quality control mechanisms decline during the process of cardiac aging. This enables the accumulation of protein aggregates and damaged organelles that contribute to age‐associated cardiac dysfunction. Macroautophagy is the process by which post‐mitotic cells such as cardiomyocytes clear defective proteins and organelles. We hypothesized that late‐in‐life exercise training improves autophagy, protein aggregate clearance, and function that is otherwise dysregulated in hearts from old vs. adult mice. As expected, 24‐month‐old male C57BL/6J mice (old) exhibited repressed autophagosome formation and protein aggregate accumulation in the heart, systolic and diastolic dysfunction, and reduced exercise capacity vs. 8‐month‐old (adult) mice (all p < 0.05). To investigate the influence of late‐in‐life exercise training, additional cohorts of 21‐month‐old mice did (old‐ETR) or did not (old‐SED) complete a 3‐month progressive resistance treadmill running program. Body composition, exercise capacity, and soleus muscle citrate synthase activity improved in old‐ETR vs. old‐SED mice at 24 months (all p < 0.05). Importantly, protein expression of autophagy markers indicate trafficking of the autophagosome to the lysosome increased, protein aggregate clearance improved, and overall function was enhanced (all p < 0.05) in hearts from old‐ETR vs. old‐SED mice. These data provide the first evidence that a physiological intervention initiated late‐in‐life improves autophagic flux, protein aggregate clearance, and contractile performance in mouse hearts. John Wiley and Sons Inc. 2021-09-23 2021-10 /pmc/articles/PMC8520717/ /pubmed/34554626 http://dx.doi.org/10.1111/acel.13467 Text en © 2021 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Papers
Cho, Jae Min
Park, Seul‐Ki
Ghosh, Rajeshwary
Ly, Kellsey
Ramous, Caroline
Thompson, Lauren
Hansen, Michele
Mattera, Maria Sara de Lima Coutinho
Pires, Karla Maria
Ferhat, Maroua
Mookherjee, Sohom
Whitehead, Kevin J.
Carter, Kandis
Buffolo, Márcio
Boudina, Sihem
Symons, J. David
Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
title Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
title_full Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
title_fullStr Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
title_full_unstemmed Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
title_short Late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
title_sort late‐in‐life treadmill training rejuvenates autophagy, protein aggregate clearance, and function in mouse hearts
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8520717/
https://www.ncbi.nlm.nih.gov/pubmed/34554626
http://dx.doi.org/10.1111/acel.13467
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