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骨骼肌卫星细胞在鸡胚胎发育后期出现。

Skeletal muscle satellite cells appear during late chicken embryogenesis.

作者信息

Hartley R S, Bandman E, Yablonka-Reuveni Z

机构信息

Department of Biological Structure, School of Medicine, University of Washington, Seattle 98195.

出版信息

Dev Biol. 1992 Oct;153(2):206-16. doi: 10.1016/0012-1606(92)90106-q.

Abstract

The emergence of avian satellite cells during development has been studied using markers that distinguish adult from fetal cells. Previous studies by us have shown that myogenic cultures from fetal (Embryonic Day 10) and adult 12-16 weeks) chicken pectoralis muscle (PM) each regulate expression of the embryonic isoform of fast myosin heavy chain (MHC) differently. In fetal cultures, embryonic MHC is coexpressed with a ventricular MHC in both myocytes (differentiated myoblasts) and myotubes. In contrast, myocytes and newly formed myotubes in adult cultures express ventricular but not embryonic MHC. In the current study, the appearance of myocytes and myotubes which express ventricular but not embryonic MHC was used to determine when adult myoblasts first emerge during avian development. By examining patterns of MHC expression in mass and clonal cultures prepared from embryonic and posthatch chicken skeletal muscle using double-label immunofluorescence with isoform-specific monoclonal antibodies, we show that a significant number of myocytes and myotubes which stain for ventricular but not embryonic MHC are first seen in cultures derived from PM during fetal development (Embryonic Day 18) and comprise the majority, if not all, of the myoblasts present at hatching and beyond. These results suggest that adult type myoblasts become dominant in late embryogenesis. We also show that satellite cell cultures derived from adult slow muscle give results similar to those of cultures derived from adult fast muscle. Cultures derived from Embryonic Day 10 hindlimb form myocytes and myotubes that coexpress ventricular and embryonic MHCs in a manner similar to cells of the Embryonic Day 10 PM. Thus, adult and fetal expression patterns of ventricular and embryonic MHCs are correlated with developmental age but not muscle fiber type.

摘要

利用区分成年细胞和胎儿细胞的标志物,对发育过程中禽类卫星细胞的出现进行了研究。我们之前的研究表明,来自胎儿(胚胎第10天)和成年(12 - 16周)鸡胸肌(PM)的成肌培养物,对快速肌球蛋白重链(MHC)胚胎异构体的表达调控方式不同。在胎儿培养物中,胚胎MHC在肌细胞(分化的成肌细胞)和肌管中均与心室MHC共表达。相比之下,成年培养物中的肌细胞和新形成的肌管表达心室MHC,但不表达胚胎MHC。在本研究中,利用表达心室MHC但不表达胚胎MHC的肌细胞和肌管的出现,来确定成年成肌细胞在禽类发育过程中首次出现的时间。通过使用异构体特异性单克隆抗体进行双标记免疫荧光,检查从胚胎期和孵化后鸡骨骼肌制备的大量培养物和克隆培养物中MHC的表达模式,我们发现,在胎儿发育期间(胚胎第18天),首次在源自胸肌的培养物中看到大量染色显示表达心室MHC但不表达胚胎MHC的肌细胞和肌管,这些细胞在孵化及之后占所有成肌细胞的大部分,甚至全部。这些结果表明,成年型成肌细胞在胚胎发育后期占主导地位。我们还表明,源自成年慢肌的卫星细胞培养物的结果与源自成年快肌的培养物相似。源自胚胎第10天的后肢的培养物形成的肌细胞和肌管,以与胚胎第10天胸肌细胞相似的方式共表达心室MHC和胚胎MHC。因此,心室MHC和胚胎MHC的成年和胎儿表达模式与发育年龄相关,但与肌纤维类型无关。

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本文引用的文献

2
Molecular and cell biology of skeletal muscle regeneration.
Mol Cell Biol Hum Dis Ser. 1993;3:210-56. doi: 10.1007/978-94-011-1528-5_9.
4
Differential response of satellite cells and embryonic myoblasts to a tumor promoter.
Dev Biol. 1983 Aug;98(2):520-4. doi: 10.1016/0012-1606(83)90382-2.
5
Origin of satellite cells in avian skeletal muscles.
Arch Anat Microsc Morphol Exp. 1983;72(2):163-81.
8
The muscle satellite cell: a review.
Int Rev Cytol. 1984;87:225-51. doi: 10.1016/s0074-7696(08)62444-4.
9
The histogenesis of rat intercostal muscle.
J Cell Biol. 1969 Jul;42(1):135-53. doi: 10.1083/jcb.42.1.135.
10
Satellite cells as the source of nuclei in muscles of growing rats.
Anat Rec. 1971 Aug;170(4):421-35. doi: 10.1002/ar.1091700405.

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