Department of Bioscience, Kitasato University School of Science, Sagamihara, Kanagawa, Japan.
Stem Cells. 2010 Dec;28(12):2205-16. doi: 10.1002/stem.547.
Satellite cells are skeletal muscle stem cells responsible for growth, maintenance, and repair of postnatal skeletal muscle. Although several studies have demonstrated that Notch signaling plays a critical role in muscle regeneration through promoting proliferation and self-renewal of satellite cells, the function of Notch3 is yet to be elucidated. We analyzed muscle regeneration in Notch3-deficient mutant mice. We found a remarkable overgrowth of muscle mass in the Notch3-deficient mice but only when they suffered repetitive muscle injuries. Immunochemical analysis found that Notch3 was expressed in Pax7(+)/MyoD(-) quiescent satellite cells and also in Pax7(+)/MyoD(+)-activated satellite cells, but the expression was restricted to around half the population of each cell type. In Notch3-deficient mice, the number of sublaminar quiescent satellite cells was significantly increased compared with those in control mice. We also found that primary cultured myoblasts isolated from the Notch3-deficient mice proliferated faster than those from control mice. Analysis of cultured myofibers revealed that the number of self-renewing Pax7-positive satellite cells attached to the myofiber was increased in the Notch3-deficient mice when compared with control mice. The data obtained in this study suggested that Notch3 pathway might be distinct from Notch1 in muscle regeneration. Because overexpression of Notch3 activated the expression of Nrarp, a negative feedback regulator of Notch signaling, Notch3 might act as a Notch1 repressor by activating Nrarp.
卫星细胞是骨骼肌干细胞,负责出生后骨骼肌的生长、维持和修复。虽然有几项研究表明 Notch 信号通路通过促进卫星细胞的增殖和自我更新在肌肉再生中起关键作用,但 Notch3 的功能仍有待阐明。我们分析了 Notch3 缺陷型突变小鼠的肌肉再生。我们发现 Notch3 缺陷型小鼠的肌肉质量显著过度生长,但只有在它们遭受反复肌肉损伤时才会发生这种情况。免疫化学分析发现 Notch3 在 Pax7(+) / MyoD(-) 静止卫星细胞和 Pax7(+) / MyoD(+) 激活卫星细胞中表达,但表达仅限于每个细胞类型的一半左右。在 Notch3 缺陷型小鼠中,亚层静止卫星细胞的数量与对照组相比显著增加。我们还发现,从 Notch3 缺陷型小鼠分离的原代培养成肌细胞比对照组的细胞增殖更快。对培养的肌纤维的分析表明,与对照组相比,附着在肌纤维上的自我更新的 Pax7 阳性卫星细胞的数量在 Notch3 缺陷型小鼠中增加。本研究获得的数据表明,Notch3 通路在肌肉再生中可能与 Notch1 不同。因为 Notch3 的过表达激活了 Notch 信号的负反馈调节剂 Nrarp 的表达,所以 Notch3 可能通过激活 Nrarp 作为 Notch1 的抑制剂起作用。