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鸟类和哺乳动物的胚胎成肌细胞本质上都是异质的。

Both avian and mammalian embryonic myoblasts are intrinsically heterogeneous.

作者信息

Ghosh S, Dhoot G K

机构信息

Department of Basic Sciences, Royal Veterinary College, University of London, UK.

出版信息

J Muscle Res Cell Motil. 1998 Oct;19(7):787-95. doi: 10.1023/a:1005403520985.

Abstract

Adult skeletal muscles are composed of different fibre types. What initiates the distinctive muscle fibre type-specific specialization in a developing embryo is still controversial. In vitro studies of avian muscles have shown the expression of one of the slow myosin heavy chains, SM2, in only some myotubes. In this report we demonstrate the expression of another slow myosin heavy chain, SM1, restricted to only some chicken myotubes (presumptive slow) in vitro. We also demonstrate that as is the case for avian species, distinct fast and slow myogenic cells are detectable in mammalian species, human and rat, during in vitro development in the absence of innervation. While antibodies to fast myosin heavy chains stained all myotubes dark in these muscle cell cultures, antibodies to slow myosin heavy chains stained only a proportion of the myotubes (presumptive slow). The other myotubes were either unstained or only weakly stained with slow myosin heavy chain antibodies. The muscle cell cultures prepared from different developmental stages of rat skeletal muscles showed a reduction in the number of slow myosin heavy chain-positive myotubes with advancing foetal growth. It is concluded that embryonic myogenic cells that are likely to form distinct fast or slow muscle fibre types are intrinsically heterogeneous, not only in avian but also in mammalian species, although extrinsic factors reinforce and modify such commitment throughout subsequent development.

摘要

成年骨骼肌由不同的纤维类型组成。在发育中的胚胎中,是什么引发了独特的肌肉纤维类型特异性特化,这一点仍存在争议。对禽类肌肉的体外研究表明,一种慢速肌球蛋白重链SM2仅在一些肌管中表达。在本报告中,我们证明了另一种慢速肌球蛋白重链SM1的表达,其在体外仅局限于一些鸡的肌管(推测为慢速肌管)。我们还证明,与禽类一样,在无神经支配的体外发育过程中,在哺乳动物物种(人类和大鼠)中也可检测到不同的快肌和慢肌成肌细胞。在这些肌肉细胞培养物中,抗快肌球蛋白重链抗体将所有肌管染成深色,而抗慢肌球蛋白重链抗体仅将一部分肌管(推测为慢速肌管)染上色。其他肌管要么未被染色,要么仅被慢肌球蛋白重链抗体弱染色。从大鼠骨骼肌不同发育阶段制备的肌肉细胞培养物显示,随着胎儿生长的推进,慢肌球蛋白重链阳性肌管的数量减少。结论是,可能形成不同快肌或慢肌纤维类型的胚胎成肌细胞本质上是异质的,不仅在禽类中如此,在哺乳动物物种中也是如此,尽管外在因素在随后的整个发育过程中加强并改变这种分化。

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