Umeå Center for Molecular Medicine, UCMM, Umeå University, 901 87 Umeå, Sweden.
J Cell Sci. 2013 Apr 15;126(Pt 8):1868-80. doi: 10.1242/jcs.119917. Epub 2013 Feb 26.
In the embryonic zebrafish, skeletal muscle fibres are formed from muscle progenitors in the paraxial mesoderm. The embryonic myotome is mostly constituted of fast-twitch-specific fibres, which are formed from a fast-specific progenitor cell pool. The most lateral fraction of the fast domain in the myotome of zebrafish embryos derives from the Pax7-positive dermomyotome-like cells. In this study, we show that two genes, belonging to the sine oculus class 1 (six1) genes (six1a and six1b), are both essential for the regulation of Pax7(+) cell proliferation and, consequently, in their differentiation during the establishment of the zebrafish dermomyotome. In both six1a and six1b morphant embryos, Pax7(+) cells are initially formed but fail to proliferate, as detected by reduced levels of the proliferation marker phosphohistone3 and reduced brdU incorporation. In congruence, overexpression of six1a or six1b leads to increased Pax7(+) cell number and reduced or alternatively delayed fibre cell differentiation. Bone morphogenetic protein signalling has previously been suggested to inhibit differentiation of Pax7(+) cells in the dermomyotome. Here we show that the remaining Pax7(+) cells in six1a and six1b morphant embryos also have significantly reduced pSmad1/5/8 levels and propose that this leads to a reduced proliferative activity, which may result in a premature differentiation of Pax7(+) cells in the zebrafish dermomyotome. In summary, we show a mechanism for Six1a and Six1b in establishing the Pax7(+) cell derived part of the fast muscle and suggest new important roles for Six1 in the regulation of the Pax7(+) muscle cell population through pSmad1/5/8 signalling.
在胚胎斑马鱼中,骨骼肌肉纤维由轴旁中胚层中的肌肉祖细胞形成。胚胎肌节主要由快肌特异性纤维组成,这些纤维是由快肌特异性祖细胞池形成的。斑马鱼胚胎肌节中快域的最外侧部分来自 Pax7 阳性的皮肌节样细胞。在这项研究中,我们表明两个属于 sine oculus 类 1(six1)基因(six1a 和 six1b)的基因对于 Pax7(+)细胞增殖的调节都是必不可少的,并且在建立斑马鱼皮肌节过程中影响其分化。在 six1a 和 six1b 突变体胚胎中,最初形成了 Pax7(+)细胞,但由于增殖标志物磷酸组蛋白 3 的水平降低和 BrdU 掺入减少而无法增殖。与此一致,six1a 或 six1b 的过表达导致 Pax7(+)细胞数量增加,而纤维细胞分化减少或延迟。骨形态发生蛋白信号先前被认为抑制皮肌节中 Pax7(+)细胞的分化。在这里,我们表明 six1a 和 six1b 突变体胚胎中剩余的 Pax7(+)细胞也具有显著降低的 pSmad1/5/8 水平,并且提出这导致增殖活性降低,这可能导致斑马鱼皮肌节中 Pax7(+)细胞过早分化。总之,我们展示了 Six1a 和 Six1b 在建立 Pax7(+)细胞衍生的快肌部分中的一种机制,并提出了 Six1 通过 pSmad1/5/8 信号在调节 Pax7(+)肌肉细胞群中的新的重要作用。