Williams Katherine, Yokomori Kyoko, Mortazavi Ali
Department of Developmental and Cell Biology, University of California, Irvine, Irvine, CA, United States.
Center for Complex Biological Systems, University of California, Irvine, Irvine, CA, United States.
Front Genet. 2022 May 13;13:835099. doi: 10.3389/fgene.2022.835099. eCollection 2022.
Single-cell RNA-seq (scRNA-seq) has revolutionized modern genomics, but the large size of myotubes and myofibers has restricted use of scRNA-seq in skeletal muscle. For the study of muscle, single-nucleus RNA-seq (snRNA-seq) has emerged not only as an alternative to scRNA-seq, but as a novel method providing valuable insights into multinucleated cells such as myofibers. Nuclei within myofibers specialize at junctions with other cell types such as motor neurons. Nuclear heterogeneity plays important roles in certain diseases such as muscular dystrophies. We survey current methods of high-throughput single cell and subcellular resolution transcriptomics, including single-cell and single-nucleus RNA-seq and spatial transcriptomics, applied to satellite cells, myoblasts, myotubes and myofibers. We summarize the major myonuclei subtypes identified in homeostatic and regenerating tissue including those specific to fiber type or at junctions with other cell types. Disease-specific nucleus populations were found in two muscular dystrophies, FSHD and Duchenne muscular dystrophy, demonstrating the importance of performing transcriptome studies at the single nucleus level in muscle.
单细胞RNA测序(scRNA-seq)彻底改变了现代基因组学,但肌管和肌纤维的大尺寸限制了scRNA-seq在骨骼肌中的应用。对于肌肉研究而言,单细胞核RNA测序(snRNA-seq)不仅成为scRNA-seq的替代方法,而且作为一种新颖的方法,为诸如肌纤维等多核细胞提供了有价值的见解。肌纤维内的细胞核在与其他细胞类型(如运动神经元)的连接处具有特异性。核异质性在某些疾病(如肌肉营养不良症)中起重要作用。我们综述了当前高通量单细胞和亚细胞分辨率转录组学方法,包括应用于卫星细胞、成肌细胞、肌管和肌纤维的单细胞和单细胞核RNA测序以及空间转录组学。我们总结了在稳态和再生组织中鉴定出的主要肌核亚型,包括那些特定于纤维类型或与其他细胞类型连接处的亚型。在两种肌肉营养不良症,面肩肱型肌营养不良症(FSHD)和杜兴氏肌肉营养不良症中发现了疾病特异性的细胞核群体,这证明了在肌肉中单细胞核水平进行转录组研究的重要性。