Cargando…

Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence

Aging is accompanied by a loss of muscle mass and function, termed sarcopenia, which causes numerous morbidities and economic burdens in human populations. Mechanisms implicated in age-related sarcopenia or frailty include inflammation, muscle stem cell depletion, mitochondrial dysfunction, and loss...

Descripción completa

Detalles Bibliográficos
Autores principales: Perez, Kevin, Ciotlos, Serban, McGirr, Julia, Limbad, Chandani, Doi, Ryosuke, Nederveen, Joshua P., Nilsson, Mats I., Winer, Daniel A., Evans, William, Tarnopolsky, Mark, Campisi, Judith, Melov, Simon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9792217/
https://www.ncbi.nlm.nih.gov/pubmed/36516485
http://dx.doi.org/10.18632/aging.204435
_version_ 1784859587274342400
author Perez, Kevin
Ciotlos, Serban
McGirr, Julia
Limbad, Chandani
Doi, Ryosuke
Nederveen, Joshua P.
Nilsson, Mats I.
Winer, Daniel A.
Evans, William
Tarnopolsky, Mark
Campisi, Judith
Melov, Simon
author_facet Perez, Kevin
Ciotlos, Serban
McGirr, Julia
Limbad, Chandani
Doi, Ryosuke
Nederveen, Joshua P.
Nilsson, Mats I.
Winer, Daniel A.
Evans, William
Tarnopolsky, Mark
Campisi, Judith
Melov, Simon
author_sort Perez, Kevin
collection PubMed
description Aging is accompanied by a loss of muscle mass and function, termed sarcopenia, which causes numerous morbidities and economic burdens in human populations. Mechanisms implicated in age-related sarcopenia or frailty include inflammation, muscle stem cell depletion, mitochondrial dysfunction, and loss of motor neurons, but whether there are key drivers of sarcopenia are not yet known. To gain deeper insights into age-related muscle loss, we performed transcriptome profiling on lower limb muscle biopsies from 72 young, elderly, and frail human subjects using bulk RNA-seq (N = 72) and single-nuclei RNA-seq (N = 17). This combined approach revealed changes in gene expression that occur with age and frailty in multiple cell types comprising mature skeletal muscle. Notably, we found increased expression of the genes MYH8 and PDK4, and decreased expression of the gene IGFN1, in aged muscle. We validated several key genes changes in fixed human muscle tissue using digital spatial profiling. We also identified a small population of nuclei that express CDKN1A, present only in aged samples, consistent with p21(cip1)-driven senescence in this subpopulation. Overall, our findings identify unique cellular subpopulations in aged and sarcopenic skeletal muscle, which will facilitate the development of new therapeutic strategies to combat age-related frailty.
format Online
Article
Text
id pubmed-9792217
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Impact Journals
record_format MEDLINE/PubMed
spelling pubmed-97922172022-12-27 Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence Perez, Kevin Ciotlos, Serban McGirr, Julia Limbad, Chandani Doi, Ryosuke Nederveen, Joshua P. Nilsson, Mats I. Winer, Daniel A. Evans, William Tarnopolsky, Mark Campisi, Judith Melov, Simon Aging (Albany NY) Research Paper Aging is accompanied by a loss of muscle mass and function, termed sarcopenia, which causes numerous morbidities and economic burdens in human populations. Mechanisms implicated in age-related sarcopenia or frailty include inflammation, muscle stem cell depletion, mitochondrial dysfunction, and loss of motor neurons, but whether there are key drivers of sarcopenia are not yet known. To gain deeper insights into age-related muscle loss, we performed transcriptome profiling on lower limb muscle biopsies from 72 young, elderly, and frail human subjects using bulk RNA-seq (N = 72) and single-nuclei RNA-seq (N = 17). This combined approach revealed changes in gene expression that occur with age and frailty in multiple cell types comprising mature skeletal muscle. Notably, we found increased expression of the genes MYH8 and PDK4, and decreased expression of the gene IGFN1, in aged muscle. We validated several key genes changes in fixed human muscle tissue using digital spatial profiling. We also identified a small population of nuclei that express CDKN1A, present only in aged samples, consistent with p21(cip1)-driven senescence in this subpopulation. Overall, our findings identify unique cellular subpopulations in aged and sarcopenic skeletal muscle, which will facilitate the development of new therapeutic strategies to combat age-related frailty. Impact Journals 2022-12-13 /pmc/articles/PMC9792217/ /pubmed/36516485 http://dx.doi.org/10.18632/aging.204435 Text en Copyright: © 2022 Perez et al. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Perez, Kevin
Ciotlos, Serban
McGirr, Julia
Limbad, Chandani
Doi, Ryosuke
Nederveen, Joshua P.
Nilsson, Mats I.
Winer, Daniel A.
Evans, William
Tarnopolsky, Mark
Campisi, Judith
Melov, Simon
Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
title Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
title_full Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
title_fullStr Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
title_full_unstemmed Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
title_short Single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
title_sort single nuclei profiling identifies cell specific markers of skeletal muscle aging, frailty, and senescence
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9792217/
https://www.ncbi.nlm.nih.gov/pubmed/36516485
http://dx.doi.org/10.18632/aging.204435
work_keys_str_mv AT perezkevin singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT ciotlosserban singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT mcgirrjulia singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT limbadchandani singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT doiryosuke singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT nederveenjoshuap singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT nilssonmatsi singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT winerdaniela singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT evanswilliam singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT tarnopolskymark singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT campisijudith singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence
AT melovsimon singlenucleiprofilingidentifiescellspecificmarkersofskeletalmuscleagingfrailtyandsenescence