Department of Animal Sciences, Purdue University, West Lafayette, Indiana, USA.
Mol Cell Biol. 2012 Jun;32(12):2300-11. doi: 10.1128/MCB.06753-11. Epub 2012 Apr 9.
Notch signaling is a conserved cell fate regulator during development and postnatal tissue regeneration. Using skeletal muscle satellite cells as a model and through myogenic cell lineage-specific NICD(OE) (overexpression of constitutively activated Notch 1 intracellular domain), here we investigate how Notch signaling regulates the cell fate choice of muscle stem cells. We show that in addition to inhibiting MyoD and myogenic differentiation, NICD(OE) upregulates Pax7 and promotes the self-renewal of satellite cell-derived primary myoblasts in culture. Using MyoD(-/-) myoblasts, we further show that NICD(OE) upregulates Pax7 independently of MyoD inhibition. In striking contrast to previous observations, NICD(OE) also inhibits S-phase entry and Ki67 expression and thus reduces the proliferation of primary myoblasts. Overexpression of canonical Notch target genes mimics the inhibitory effects of NICD(OE) on MyoD and Ki67 but not the stimulatory effect on Pax7. Instead, NICD regulates Pax7 through interaction with RBP-Jκ, which binds to two consensus sites upstream of the Pax7 gene. Importantly, satellite cell-specific NICD(OE) results in impaired regeneration of skeletal muscles along with increased Pax7(+) mononuclear cells. Our results establish a role of Notch signaling in actively promoting the self-renewal of muscle stem cells through direct regulation of Pax7.
Notch 信号通路是发育过程和出生后组织再生中细胞命运调控的保守信号通路。本研究以骨骼肌卫星细胞为模型,通过肌源性细胞谱系特异性 NICD(OE)(组成性激活 Notch 1 细胞内结构域的过表达),研究 Notch 信号通路如何调节肌肉干细胞的细胞命运选择。结果表明,除了抑制 MyoD 和肌分化外,NICD(OE)还上调 Pax7,并促进培养中卫星细胞衍生的原代成肌细胞的自我更新。利用 MyoD(-/-)成肌细胞,我们进一步表明,NICD(OE)上调 Pax7 不依赖于 MyoD 抑制。与之前的观察结果形成鲜明对比的是,NICD(OE)还抑制 S 期进入和 Ki67 表达,从而减少原代成肌细胞的增殖。经典 Notch 靶基因的过表达模拟了 NICD(OE)对 MyoD 和 Ki67 的抑制作用,但对 Pax7 的刺激作用却没有模拟。相反,NICD 通过与 RBP-Jκ相互作用来调节 Pax7,RBP-Jκ结合到 Pax7 基因上游的两个共有序列位点上。重要的是,卫星细胞特异性 NICD(OE)导致骨骼肌再生受损,同时 Pax7(+)单核细胞增加。我们的研究结果确立了 Notch 信号通路在通过直接调节 Pax7 来积极促进肌肉干细胞自我更新中的作用。