Norris W, Neyt C, Ingham P W, Currie P D
Molecular Embryology Laboratory, Imperial Cancer Research Fund, London WC2A 3PX, UK.
J Cell Sci. 2000 Aug;113 ( Pt 15):2695-703. doi: 10.1242/jcs.113.15.2695.
Muscles are composed of several fibre types, the precise combination of which determines muscle function. Whereas neonatal and adult fibre type is influenced by a number of extrinsic factors, such as neural input and muscle load, there is little knowledge of how muscle cells are initially determined in the early embryo. In the zebrafish, fibres of the slow twitch class arise from precociously specified myoblasts that lie close to the midline whereas the remainder of the myotome differentiates as fast myosin expressing muscle. In vivo evidence has suggested the Sonic Hedgehog glycoprotein, secreted from the notochord, controls the formation of slow twitch and fast twitch muscle fates. Here we describe an in vitro culture system that we have developed to test directly the ability of zebrafish myoblasts to respond to exogenous Sonic Hedgehog peptide. We find that Sonic Hedgehog peptide can control the binary cell fate choice of embryonic zebrafish myoblasts in vitro. We have also used this culture system to assay the relative activities of different Hedgehog-family proteins and to investigate the possible involvement of heterotrimeric G-proteins in Hedgehog signal transduction.
肌肉由几种纤维类型组成,这些纤维类型的精确组合决定了肌肉功能。虽然新生儿和成人的纤维类型受多种外在因素影响,如神经输入和肌肉负荷,但对于早期胚胎中肌肉细胞最初是如何被决定的,我们知之甚少。在斑马鱼中,慢肌纤维类的纤维起源于靠近中线的早熟指定成肌细胞,而肌节的其余部分分化为表达快肌球蛋白的肌肉。体内证据表明,从脊索分泌的音猬因子糖蛋白控制慢肌纤维和快肌纤维命运的形成。在此,我们描述了一种体外培养系统,该系统是我们为直接测试斑马鱼成肌细胞对外源音猬因子肽的反应能力而开发的。我们发现,音猬因子肽可以在体外控制胚胎斑马鱼成肌细胞的二元细胞命运选择。我们还利用这个培养系统来测定不同刺猬家族蛋白的相对活性,并研究异源三聚体G蛋白在刺猬信号转导中可能的参与情况。