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孵化后鸡的成肌过程中Pax7表达模式建立了卫星细胞分化和更新的模型。

Pattern of Pax7 expression during myogenesis in the posthatch chicken establishes a model for satellite cell differentiation and renewal.

作者信息

Halevy Orna, Piestun Yogev, Allouh Mohammed Z, Rosser Benjamin W C, Rinkevich Yuval, Reshef Ram, Rozenboim Israel, Wleklinski-Lee Monika, Yablonka-Reuveni Zipora

机构信息

Department of Animal Sciences, The Hebrew University of Jerusalem, Rehovot, Israel.

出版信息

Dev Dyn. 2004 Nov;231(3):489-502. doi: 10.1002/dvdy.20151.

Abstract

The paired-box transcription factor Pax7 plays a critical role in the specification of satellite cells in mouse skeletal muscle. In the present study, the position and number of Pax7-expressing cells found in muscles of growing and adult chickens confirm the presence of this protein in avian satellite cells. The expression pattern of Pax7 protein, along with the muscle regulatory proteins MyoD and myogenin, was additionally elucidated in myogenic cultures and in whole muscle from posthatch chickens. In cultures progressing from proliferation to differentiation, the expression of Pax7 in MyoD+ cells declined as the cells began expressing myogenin, suggesting Pax7 as an early marker for proliferating myoblasts. At all time points, some Pax7+ cells were negative for MyoD, resembling the reserve cell phenotype. Clonal analysis of muscle cell preparations demonstrated that single progenitors can give rise to both differentiating and reserve cells. In muscle tissues, Pax7 protein expression was the strongest by 1 day posthatch, declining on days 3 and 6 to a similar level. In contrast, myogenin expression peaked on day 3 and then dramatically declined. This finding was accompanied by a robust growth in fiber diameter between day 3 and 6. The distinctions in Pax7 and myogenin expression patterns, both in culture and in vivo, indicate that while some of the myoblasts differentiate and fuse into myofibers during early stages of posthatch growth, others retain their reserve cell capacity.

摘要

配对盒转录因子Pax7在小鼠骨骼肌卫星细胞的特化过程中发挥着关键作用。在本研究中,在生长鸡和成年鸡肌肉中发现的表达Pax7的细胞的位置和数量证实了这种蛋白质在禽类卫星细胞中的存在。此外,还在孵化后鸡的成肌培养物和整个肌肉中阐明了Pax7蛋白与肌肉调节蛋白MyoD和肌细胞生成素的表达模式。在从增殖向分化进展的培养物中,随着细胞开始表达肌细胞生成素,MyoD+细胞中Pax7的表达下降,这表明Pax7是增殖性成肌细胞的早期标志物。在所有时间点,一些Pax7+细胞对MyoD呈阴性,类似于储备细胞表型。肌肉细胞制剂的克隆分析表明,单个祖细胞可以产生分化细胞和储备细胞。在肌肉组织中,Pax7蛋白表达在孵化后1天最强,在第3天和第6天下降到相似水平。相比之下,肌细胞生成素的表达在第3天达到峰值,然后急剧下降。这一发现伴随着第3天到第6天纤维直径的强劲增长。在培养物和体内,Pax7和肌细胞生成素表达模式的差异表明,在孵化后生长的早期阶段,一些成肌细胞分化并融合成肌纤维,而另一些则保留其储备细胞能力。

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