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规范的 NF-κB 信号转导调控卫星干细胞在再生肌发生过程中的自我更新和功能。

Canonical NF-κB signaling regulates satellite stem cell homeostasis and function during regenerative myogenesis.

机构信息

Departments of Anatomical Sciences and Neurobiology, University of Louisville School of Medicine, Louisville, Kentucky, USA.

出版信息

J Mol Cell Biol. 2019 Jan 1;11(1):53-66. doi: 10.1093/jmcb/mjy053.

Abstract

Skeletal muscle regeneration in adults is attributed to the presence of satellite stem cells that proliferate, differentiate, and eventually fuse with injured myofibers. However, the signaling mechanisms that regulate satellite cell homeostasis and function remain less understood. While IKKβ-mediated canonical NF-κB signaling has been implicated in the regulation of myogenesis and skeletal muscle mass, its role in the regulation of satellite cell function during muscle regeneration has not been fully elucidated. Here, we report that canonical NF-κB signaling is induced in skeletal muscle upon injury. Satellite cell-specific inducible ablation of IKKβ attenuates skeletal muscle regeneration in adult mice. Targeted ablation of IKKβ also reduces the number of satellite cells in injured skeletal muscle of adult mice, potentially through inhibiting their proliferation and survival. We also demonstrate that the inhibition of specific components of the canonical NF-κB pathway causes precocious differentiation of cultured satellite cells both ex vivo and in vitro. Finally, our results highlight that the constitutive activation of canonical NF-κB signaling in satellite cells also attenuates skeletal muscle regeneration following injury in adult mice. Collectively, our study demonstrates that the proper regulation of canonical NF-κB signaling is important for the regeneration of adult skeletal muscle.

摘要

成体骨骼肌的再生归因于卫星干细胞的存在,卫星干细胞增殖、分化,并最终与受损的肌纤维融合。然而,调节卫星细胞稳态和功能的信号机制仍知之甚少。虽然 IKKβ 介导的经典 NF-κB 信号已被牵涉到肌发生和骨骼肌质量的调节中,但它在调节肌肉再生过程中卫星细胞功能的作用尚未完全阐明。在这里,我们报告在损伤后,经典 NF-κB 信号在骨骼肌中被诱导。在成年小鼠中,卫星细胞特异性诱导性敲除 IKKβ 会减弱骨骼肌的再生。IKKβ 的靶向敲除也减少了成年小鼠受损骨骼肌中的卫星细胞数量,这可能是通过抑制它们的增殖和存活来实现的。我们还证明,抑制经典 NF-κB 通路的特定成分会导致体外和体外培养的卫星细胞过早分化。最后,我们的结果强调,卫星细胞中经典 NF-κB 信号的组成性激活也会减弱成年小鼠损伤后的骨骼肌再生。总之,我们的研究表明,适当调节经典 NF-κB 信号对成体骨骼肌的再生很重要。

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