Single-cell transcriptional profiles in human skeletal muscle

Author:

Rubenstein Aliza B.,Smith Gregory R.,Raue Ulrika,Begue GwénaëlleORCID,Minchev Kiril,Ruf-Zamojski FrederiqueORCID,Nair Venugopalan D.,Wang Xingyu,Zhou Lan,Zaslavsky ElenaORCID,Trappe Todd A.,Trappe Scott,Sealfon Stuart C.ORCID

Abstract

AbstractSkeletal muscle is a heterogeneous tissue comprised of muscle fiber and mononuclear cell types that, in addition to movement, influences immunity, metabolism and cognition. We investigated the gene expression patterns of skeletal muscle cells using RNA-seq of subtype-pooled single human muscle fibers and single cell RNA-seq of mononuclear cells from human vastus lateralis, mouse quadriceps, and mouse diaphragm. We identified 11 human skeletal muscle mononuclear cell types, including two fibro-adipogenic progenitor (FAP) cell subtypes. The human FBN1+ FAP cell subtype is novel and a corresponding FBN1+ FAP cell type was also found in single cell RNA-seq analysis in mouse. Transcriptome exercise studies using bulk tissue analysis do not resolve changes in individual cell-type proportion or gene expression. The cell-type gene signatures provide the means to use computational methods to identify cell-type level changes in bulk studies. As an example, we analyzed public transcriptome data from an exercise training study and revealed significant changes in specific mononuclear cell-type proportions related to age, sex, acute exercise and training. Our single-cell expression map of skeletal muscle cell types will further the understanding of the diverse effects of exercise and the pathophysiology of muscle disease.

Funder

U.S. Department of Health & Human Services | NIH | National Institute of Arthritis and Musculoskeletal and Skin Diseases

U.S. Department of Health & Human Services | National Institutes of Health

Ball State University

Empire State Development's Division of Science, Technology and Innovation

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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