Sun Chengyi, Swoboda Casey O, Petrany Michael J, Parameswaran Sreeja, VonHandorf Andrew, Weirauch Matthew T, Lepper Christoph, Millay Douglas P
Division of Molecular Cardiovascular Biology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
Division of Biomedical Informatics, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, USA.
bioRxiv. 2023 Aug 25:2023.08.24.554609. doi: 10.1101/2023.08.24.554609.
Multinucleated skeletal muscle cells have an obligatory need to acquire additional nuclei through fusion with activated skeletal muscle stem cells when responding to both developmental and adaptive growth stimuli. A fundamental question in skeletal muscle biology has been the reason underlying this need for new nuclei in syncytial cells that already harbor hundreds of nuclei. To begin to answer this long-standing question, we utilized nuclear RNA-sequencing approaches and developed a lineage tracing strategy capable of defining the transcriptional state of recently fused nuclei and distinguishing this state from that of pre-existing nuclei. Our findings reveal the presence of conserved markers of newly fused nuclei both during development and after a hypertrophic stimulus in the adult. However, newly fused nuclei also exhibit divergent gene expression that is determined by the myogenic environment to which they fuse. Moreover, accrual of new nuclei through fusion is required for nuclei already resident in adult myofibers to mount a normal transcriptional response to a load-inducing stimulus. We propose a model of mutual regulation in the control of skeletal muscle development and adaptations, where newly fused and pre-existing myonuclear populations influence each other to maintain optimal functional growth.
多核骨骼肌细胞在应对发育和适应性生长刺激时,必须通过与活化的骨骼肌干细胞融合来获取额外的细胞核。骨骼肌生物学中的一个基本问题是,在已经含有数百个细胞核的多核细胞中,为何还需要新的细胞核。为了开始回答这个长期存在的问题,我们采用了核RNA测序方法,并开发了一种谱系追踪策略,能够定义最近融合细胞核的转录状态,并将其与预先存在的细胞核状态区分开来。我们的研究结果揭示了在发育过程中和成年肥大刺激后,新融合细胞核中保守标志物的存在。然而,新融合的细胞核也表现出不同的基因表达,这取决于它们所融合的成肌环境。此外,成年肌纤维中已有的细胞核要对负荷诱导刺激产生正常的转录反应,需要通过融合积累新的细胞核。我们提出了一个在骨骼肌发育和适应性控制中的相互调节模型,其中新融合的和预先存在的肌核群体相互影响,以维持最佳的功能生长。