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Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice

One inevitable consequence of aging is the gradual deterioration of physical function and exercise capacity, driven in part by the adverse effect of age on muscle tissue. We hypothesized that relationships exist between age-related differentially expressed genes (DEGs) in skeletal muscle and age-ass...

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Autores principales: Graber, Ted G., Maroto, Rosario, Thompson, Jill K., Widen, Steven G., Man, Zhaohui, Pajski, Megan L., Rasmussen, Blake B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10597580/
https://www.ncbi.nlm.nih.gov/pubmed/37876943
http://dx.doi.org/10.3390/jal3020013
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author Graber, Ted G.
Maroto, Rosario
Thompson, Jill K.
Widen, Steven G.
Man, Zhaohui
Pajski, Megan L.
Rasmussen, Blake B.
author_facet Graber, Ted G.
Maroto, Rosario
Thompson, Jill K.
Widen, Steven G.
Man, Zhaohui
Pajski, Megan L.
Rasmussen, Blake B.
author_sort Graber, Ted G.
collection PubMed
description One inevitable consequence of aging is the gradual deterioration of physical function and exercise capacity, driven in part by the adverse effect of age on muscle tissue. We hypothesized that relationships exist between age-related differentially expressed genes (DEGs) in skeletal muscle and age-associated declines in physical function and exercise capacity. Previously, male C57BL/6mice (6m, months old, 24m, and 28m) were tested for physical function using a composite scoring system (comprehensive functional assessment battery, CFAB) comprised of five well-validated tests of physical function. In this study, total RNA was isolated from tibialis anterior samples (n = 8) randomly selected from each age group in the parent study. Using Next Generation Sequencing RNAseq to determine DEGs during aging (6m vs. 28m, and 6m vs. 24m), we found a greater than five-fold increase in DEGs in 28m compared to the 24m. Furthermore, regression of the normalized expression of each DEG with the CFAB score of the corresponding mouse revealed many more DEGs strongly associated (R ≥ |0.70|) with functional status in the older mice. Gene ontology results indicate highly enriched axon guidance and acetyl choline receptor gene sets, suggesting that denervation/reinnervation flux might potentially play a critical role in functional decline. We conclude that specific age-related DEG patterns are associated with declines in physical function, and the data suggest accelerated aging occurring between 24 and 28 months.
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spelling pubmed-105975802023-10-24 Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice Graber, Ted G. Maroto, Rosario Thompson, Jill K. Widen, Steven G. Man, Zhaohui Pajski, Megan L. Rasmussen, Blake B. J Ageing Longev Article One inevitable consequence of aging is the gradual deterioration of physical function and exercise capacity, driven in part by the adverse effect of age on muscle tissue. We hypothesized that relationships exist between age-related differentially expressed genes (DEGs) in skeletal muscle and age-associated declines in physical function and exercise capacity. Previously, male C57BL/6mice (6m, months old, 24m, and 28m) were tested for physical function using a composite scoring system (comprehensive functional assessment battery, CFAB) comprised of five well-validated tests of physical function. In this study, total RNA was isolated from tibialis anterior samples (n = 8) randomly selected from each age group in the parent study. Using Next Generation Sequencing RNAseq to determine DEGs during aging (6m vs. 28m, and 6m vs. 24m), we found a greater than five-fold increase in DEGs in 28m compared to the 24m. Furthermore, regression of the normalized expression of each DEG with the CFAB score of the corresponding mouse revealed many more DEGs strongly associated (R ≥ |0.70|) with functional status in the older mice. Gene ontology results indicate highly enriched axon guidance and acetyl choline receptor gene sets, suggesting that denervation/reinnervation flux might potentially play a critical role in functional decline. We conclude that specific age-related DEG patterns are associated with declines in physical function, and the data suggest accelerated aging occurring between 24 and 28 months. 2023-06 2022-05-31 /pmc/articles/PMC10597580/ /pubmed/37876943 http://dx.doi.org/10.3390/jal3020013 Text en https://creativecommons.org/licenses/by/4.0/This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/ ).
spellingShingle Article
Graber, Ted G.
Maroto, Rosario
Thompson, Jill K.
Widen, Steven G.
Man, Zhaohui
Pajski, Megan L.
Rasmussen, Blake B.
Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice
title Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice
title_full Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice
title_fullStr Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice
title_full_unstemmed Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice
title_short Skeletal Muscle Transcriptome Alterations Related to Declining Physical Function in Older Mice
title_sort skeletal muscle transcriptome alterations related to declining physical function in older mice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10597580/
https://www.ncbi.nlm.nih.gov/pubmed/37876943
http://dx.doi.org/10.3390/jal3020013
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