Lamey T M, Koenders A, Ziman M
School of Biomedical and Sports Science, Edith Cowan University, Joondalup, Western Australia, Australia.
Histol Histopathol. 2004 Oct;19(4):1289-300. doi: 10.14670/HH-19.1289.
Pax3 and Pax7 are powerful myogenic inducers and hence play a critical role in skeletal muscle development and regeneration. In this paper we discuss the role of Pax3 and Pax7 in dorsal patterning of the somite with subsequent determination of myogenic precursor cells for muscle formation within the developing embryo and in adult muscle. Recent evidence of the ability of stem cells to contribute to muscle regeneration in adult tissues, and the role of Pax7 in conversion of multipotent stem cells to the myogenic lineage are also discussed. Several tissue specific Pax7 transcripts that encode isoforms with different DNA binding characteristics and potentially distinct transactivation specificities are identified. The expression of a range of transcripts in the determination of different tissue lineages and distinct cell populations both in the embryo and in the adult indicates an extraordinary level of complexity. A detailed understanding of these molecules and their functions during embryogenesis and adult muscle formation is imperative for future stem cell therapies.
Pax3和Pax7是强大的生肌诱导因子,因此在骨骼肌发育和再生中发挥关键作用。在本文中,我们讨论了Pax3和Pax7在体节背侧模式形成中的作用,以及随后在发育中的胚胎和成体肌肉中确定用于肌肉形成的生肌前体细胞的过程。还讨论了干细胞在成体组织中促进肌肉再生能力的最新证据,以及Pax7在多能干细胞向生肌谱系转化中的作用。我们鉴定了几种组织特异性的Pax7转录本,它们编码具有不同DNA结合特性和潜在不同反式激活特异性的同工型。一系列转录本在胚胎和成体中不同组织谱系和不同细胞群体的确定中的表达表明了其复杂性极高。对于未来的干细胞治疗而言,详细了解这些分子及其在胚胎发生和成体肌肉形成过程中的功能至关重要。