Ortuste Quiroga Huascar Pedro, Fujimaki Shin, Ono Yusuke
Department of Muscle Development and Regeneration, Institute of Molecular Embryology and Genetics (IMEG), Kumamoto University, Honjo, Chuo-ku, Kumamoto.
Department of Muscle Development and Regeneration, Institute of Molecular Embryology and Genetics (IMEG), Kumamoto University, Honjo, Chuo-ku, Kumamoto, Japan; Tokyo Metropolitan Institute for Geriatrics and Gerontology (TMIG), Sakae-cho, Itabashi, Tokyo.
Eur J Transl Myol. 2023 Dec 18;33(4):12174. doi: 10.4081/ejtm.2023.12174.
Since their discovery, satellite cells have showcased their need as primary contributors to skeletal muscle maintenance and repair. Satellite cells lay dormant, but when needed, activate, differentiate, fuse to fibres and self-renew, that has bestowed satellite cells with the title of muscle stem cells. The satellite cell specific transcription factor Pax7 has enabled researchers to develop animal models against the Pax7 locus in order to isolate and characterise satellite cell-mediated events. This review focuses specifically on describing Pax7 reporter mouse models. Here we describe how each model was generated and the key findings obtained. The strengths and limitations of each model are also discussed. The aim is to provide new and current satellite cell enthusiasts with a basic understanding of the available Pax7 reporter mice and hopefully guide selection of the most appropriate Pax7 model to answer a specific research question.
自从被发现以来,卫星细胞已显示出它们作为骨骼肌维持和修复主要贡献者的必要性。卫星细胞处于休眠状态,但在需要时会激活、分化、融合到肌纤维并自我更新,这赋予了卫星细胞肌肉干细胞的称号。卫星细胞特异性转录因子Pax7使研究人员能够开发针对Pax7基因座的动物模型,以分离和表征卫星细胞介导的事件。本综述特别侧重于描述Pax7报告基因小鼠模型。在这里,我们描述了每个模型是如何产生的以及获得的关键发现。还讨论了每个模型的优点和局限性。目的是为新的和现有的卫星细胞研究人员提供对可用的Pax7报告基因小鼠的基本了解,并希望指导选择最合适的Pax7模型来回答特定的研究问题。