Laboratory Animal Resource Center in Transborder Medical Research Center, and Department of Anatomy and Embryology, Institute of Medicine, University of Tsukuba, Ibaraki 305-8575, Japan.
PhD Program in Humanics, School of Integrative and Global Majors, University of Tsukuba, Ibaraki 305-8575, Japan.
Stem Cells. 2024 Sep 10;42(9):830-847. doi: 10.1093/stmcls/sxae045.
Muscle regeneration depends on muscle stem cell (MuSC) activity. Myogenic regulatory factors, including myoblast determination protein 1 (MyoD), regulate the fate transition of MuSCs. However, the direct target of MYOD in the process is not completely clear. Using previously established MyoD knock-in (MyoD-KI) mice, we revealed that MyoD targets dual-specificity phosphatase (Dusp) 13 and Dusp27. In Dusp13:Dusp27 double knock-out mice, the ability for muscle regeneration after injury was reduced. Moreover, single-cell RNA sequencing of MyoD-high expressing MuSCs from MyoD-KI mice revealed that Dusp13 and Dusp27 are expressed only in specific populations within MyoD-high MuSCs, which also express Myogenin. Overexpressing Dusp13 in MuSCs causes premature muscle differentiation. Thus, we propose a model where DUSP13 and DUSP27 contribute to the fate transition of MuSCs from proliferation to differentiation during myogenesis.
肌肉再生依赖于肌肉干细胞(MuSC)的活性。成肌调节因子,包括成肌决定蛋白 1(MyoD),调控 MuSC 的命运转变。然而,MyoD 在这一过程中的直接靶标并不完全清楚。利用先前建立的 MyoD 敲入(MyoD-KI)小鼠,我们揭示了 MyoD 靶向双特异性磷酸酶(Dusp)13 和 Dusp27。在 Dusp13:Dusp27 双敲除小鼠中,损伤后肌肉再生的能力降低。此外,对 MyoD-KI 小鼠中 MyoD 高表达 MuSC 的单细胞 RNA 测序显示,Dusp13 和 Dusp27 仅在 MyoD 高 MuSC 中的特定群体中表达,这些群体也表达 Myogenin。在 MuSCs 中过表达 Dusp13 会导致肌肉过早分化。因此,我们提出了一个模型,其中 DUSP13 和 DUSP27 有助于 MuSC 从增殖到分化的命运转变,从而促进成肌发生。