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RhoA介导的G-G信号传导维持肌肉干细胞的静止状态并防止干细胞丢失。

RhoA-mediated G-G signaling maintains muscle stem cell quiescence and prevents stem cell loss.

作者信息

Peng Yundong, Du Jingjing, Li Rui, Günther Stefan, Wettschureck Nina, Offermanns Stefan, Wang Yan, Schneider Andre, Braun Thomas

机构信息

Department of Cardiac Development and Remodeling, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.

Department of Pharmacology, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany.

出版信息

Cell Discov. 2024 Jul 16;10(1):76. doi: 10.1038/s41421-024-00696-7.

Abstract

Multiple processes control quiescence of muscle stem cells (MuSCs), which is instrumental to guarantee long-term replenishment of the stem cell pool. Here, we describe that the G-proteins G-G integrate signals from different G-protein-coupled receptors (GPCRs) to control MuSC quiescence via activation of RhoA. Comprehensive screening of GPCR ligands identified two MuSC-niche-derived factors, endothelin-3 (ET-3) and neurotensin (NT), which activate G-G signaling in MuSCs. Stimulation with ET-3 or NT prevented MuSC activation, whereas pharmacological inhibition of ET-3 or NT attenuated MuSC quiescence. Inactivation of Gna12-Gna13 or Rhoa but not of Gnaq-Gna11 completely abrogated MuSC quiescence, which depleted the MuSC pool and was associated with accelerated sarcopenia during aging. Expression of constitutively active RhoA prevented exit from quiescence in Gna12-Gna13 mutant MuSCs, inhibiting cell cycle entry and differentiation via Rock and formins without affecting Rac1-dependent MuSC projections, a hallmark of quiescent MuSCs. The study uncovers a critical role of G-G and RhoA signaling for active regulation of MuSC quiescence.

摘要

多种过程控制肌肉干细胞(MuSCs)的静止状态,这对于保证干细胞库的长期补充至关重要。在此,我们描述G蛋白Gα12-Gα13整合来自不同G蛋白偶联受体(GPCRs)的信号,通过激活RhoA来控制MuSCs的静止状态。对GPCR配体的全面筛选鉴定出两种源自MuSCs生态位的因子,内皮素-3(ET-3)和神经降压素(NT),它们在MuSCs中激活Gα12-Gα13信号。用ET-3或NT刺激可防止MuSCs激活,而对ET-3或NT的药理学抑制则减弱了MuSCs的静止状态。Gna12-Gna13或Rhoa的失活而非Gnaq-Gna11的失活完全消除了MuSCs的静止状态,这使MuSCs库耗竭,并与衰老过程中肌肉减少症的加速有关。组成型活性RhoA的表达阻止了Gna12-Gna13突变体MuSCs退出静止状态,通过Rock和formin抑制细胞周期进入和分化,而不影响静止MuSCs的标志Rac1依赖性MuSCs突起。该研究揭示了Gα12-Gα13和RhoA信号在主动调节MuSCs静止状态中的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6048/11251043/c332f3e8390a/41421_2024_696_Fig1_HTML.jpg

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