Kuang Shihuan, Chargé Sophie B, Seale Patrick, Huh Michael, Rudnicki Michael A
Molecular Medicine Program, Ottawa Health Research Institute, Ottawa, Ontario, Canada.
J Cell Biol. 2006 Jan 2;172(1):103-13. doi: 10.1083/jcb.200508001.
We assessed viable Pax7(-/-) mice in 129Sv/J background and observed reduced growth and marked muscle wasting together with a complete absence of functional satellite cells. Acute injury resulted in an extreme deficit in muscle regeneration. However, a small number of regenerated myofibers were detected, suggesting the presence of residual myogenic cells in Pax7-deficient muscle. Rare Pax3(+)/MyoD+ myoblasts were recovered from Pax7(-/-) muscle homogenates and cultures of myofiber bundles but not from single myofibers free of interstitial tissues. Finally, we identified Pax3+ cells in the muscle interstitial environment and demonstrated that they coexpressed MyoD during regeneration. Sublaminar satellite cells in hind limb muscle did not express detectable levels of Pax3 protein or messenger RNA. Therefore, we conclude that interstitial Pax3+ cells represent a novel myogenic population that is distinct from the sublaminar satellite cell lineage and that Pax7 is essential for the formation of functional myogenic progenitors from sublaminar satellite cells.
我们评估了129Sv/J背景下的存活Pax7(-/-)小鼠,观察到其生长减缓、明显的肌肉萎缩,且完全没有功能性卫星细胞。急性损伤导致肌肉再生极度不足。然而,检测到少量再生肌纤维,这表明Pax7缺陷型肌肉中存在残余的生肌细胞。从Pax7(-/-)肌肉匀浆和肌纤维束培养物中回收了罕见的Pax3(+)/MyoD+成肌细胞,但从无间质组织的单个肌纤维中未回收。最后,我们在肌肉间质环境中鉴定出Pax3+细胞,并证明它们在再生过程中共同表达MyoD。后肢肌肉的层下卫星细胞未表达可检测水平的Pax3蛋白或信使RNA。因此,我们得出结论,间质Pax3+细胞代表一种新型生肌群体,与层下卫星细胞谱系不同,且Pax7对于从层下卫星细胞形成功能性生肌祖细胞至关重要。