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双特异性磷酸酶 13 和 27 作为肌肉干细胞从增殖到分化的关键转换开关。

Dual-specificity phosphatases 13 and 27 as key switches in muscle stem cell transition from proliferation to differentiation.

机构信息

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.

出版信息

Stem Cells. 2024 Sep 10;42(9):830-847. doi: 10.1093/stmcls/sxae045.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47e2/11384902/407fd2ce349f/sxae045_fig7.jpg

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