Sox11 is enriched in myogenic progenitors but dispensable for development and regeneration of the skeletal muscle

被引:0
作者
Stephanie N. Oprescu
Nick Baumann
Xiyue Chen
Qiang Sun
Yu Zhao
Feng Yue
Huating Wang
Shihuan Kuang
机构
[1] Purdue University,Department of Biological Sciences
[2] Purdue University,Department of Animal Sciences
[3] Li Ka Shing Institute of Health Sciences,Department of Orthopedics and Traumatology
[4] The Chinese University of Hong Kong; Center for Neuromusculoskeletal Restorative Medicine,Center for Cancer Research
[5] Hong Kong Science Park,undefined
[6] Purdue University,undefined
来源
Skeletal Muscle | / 13卷
关键词
Aging; Differentiation; Satellite cells; Single-cell RNA-sequencing (scRNA-seq); SRY-box transcription factor; Stem cells;
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摘要
Transcription factors (TFs) play key roles in regulating differentiation and function of stem cells, including muscle satellite cells (MuSCs), a resident stem cell population responsible for postnatal regeneration of the skeletal muscle. Sox11 belongs to the Sry-related HMG-box (SOX) family of TFs that play diverse roles in stem cell behavior and tissue specification. Analysis of single-cell RNA-sequencing (scRNA-seq) datasets identify a specific enrichment of Sox11 mRNA in differentiating but not quiescent MuSCs. Consistent with the scRNA-seq data, Sox11 levels increase during differentiation of murine primary myoblasts in vitro. scRNA-seq data comparing muscle regeneration in young and old mice further demonstrate that Sox11 expression is reduced in aged MuSCs. Age-related decline of Sox11 expression is associated with reduced chromatin contacts within the topologically associating domains. Unexpectedly, Myod1Cre-driven deletion of Sox11 in embryonic myoblasts has no effects on muscle development and growth, resulting in apparently healthy muscles that regenerate normally. Pax7CreER- or Rosa26CreER- driven (MuSC-specific or global) deletion of Sox11 in adult mice similarly has no effects on MuSC differentiation or muscle regeneration. These results identify Sox11 as a novel myogenic differentiation marker with reduced expression in quiescent and aged MuSCs, but the specific function of Sox11 in myogenesis remains to be elucidated.
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[1]  
Frontera WR(2015)Skeletal muscle: a brief review of structure and function Calcif Tissue Int 96 183-195
[2]  
Ochala J(2013)Satellite cells and the muscle stem cell niche Physiol Rev 93 23-67
[3]  
Yin H(2000)Evidence for a myogenic stem cell that is exhausted in dystrophic muscle J Cell Sci 113 2299-2308
[4]  
Price F(2019)Muscle satellite cells and impaired late stage regeneration in different murine models for muscular dystrophies Sci Rep 9 11842-2353
[5]  
Rudnicki MA(2016)Conditional loss of Pten in myogenic progenitors leads to postnatal skeletal muscle hypertrophy but age-dependent exhaustion of satellite cells Cell Rep 17 2340-4
[6]  
Heslop L(2021)Perspectives on skeletal muscle stem cells Nat Commun 12 692-331
[7]  
Morgan JE(2013)Molecular regulation of determination in asymmetrically dividing muscle stem cells Cell Cycle 12 3-238
[8]  
Partridge TA(2008)The molecular regulation of muscle stem cell function Cold Spring Harb Symp Quant Biol 73 323-18
[9]  
Ribeiro AF(2004)Cellular and molecular regulation of muscle regeneration Physiol Rev 84 209-766
[10]  
Souza LS(2017)The myogenic regulatory factors, determinants of muscle development, cell identity and regeneration Semin Cell Dev Biol 72 10-2695