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首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Differential muscle regulatory factor gene expression between larval and adult myogenesis in the frog Xenopus laevis: adult myogenic cell-specific myf5 upregulation and its relation to the notochord suppression of adult muscle differentiation
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Differential muscle regulatory factor gene expression between larval and adult myogenesis in the frog Xenopus laevis: adult myogenic cell-specific myf5 upregulation and its relation to the notochord suppression of adult muscle differentiation

机译:蛙爪蟾幼虫和成年肌形成之间的差异性肌肉调节因子基因表达:成年成肌细胞特异性myf5上调及其与成年肌成年线抑制的关系

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摘要

During Xenopus laevis metamorphosis, larval-to-adult muscle conversion depends on the differential responses of adult and larval myogenic cells to thyroid hormone. Essential differences in cell growth, differentiation, and hormone-dependent life-or-death fate have been reported between cultured larval (tail) and adult (hindlimb) myogenic cells. A previous study revealed that tail notochord cells suppress terminal differentiation in adult (but not larval) myogenic cells. However, little is known about the differences in expression patterns of myogenic regulatory factors (MRF) and the satellite cell marker Pax7 between adult and larval myogenic cells. In the present study, we compared mRNA expression of these factors between the two types. At first, reverse transcription polymerase chain reaction analysis of hindlimb buds showed sequential upregulation of myf5, myogenin, myod, and mrf4 during stages 50-54, when limb buds elongate and muscles begin to form. By contrast, in the tail, there was no such increase during the same period. Secondary, these results were duplicated in vitro: adult myogenic cells upregulated myf5, myod, and pax7 in the early culture period, followed by myogenin upregulation and myotube differentiation, while larval myogenic cells did not upregulate these genes and precociously started myotube differentiation. Thirdly, myf5 upregulation and early-phase proliferation in adult myogenic cells were potently inhibited by the presence of notochord cells, suggesting that notochord cells suppress adult myogenesis through inhibiting the transition from Myf5(-) stem cells to Myf5(+) committed myoblasts. All of the data presented here suggest that myf5 upregulation can be a good criterion for the activation of adult myogenesis during X. laevis metamorphosis.
机译:在非洲爪蟾变态期间,幼虫到成人的肌肉转化取决于成年和幼虫成肌细胞对甲状腺激素的不同反应。据报道,在培养的幼虫(尾)和成年(后肢)成肌细胞之间,细胞生长,分化和激素依赖性的生死命运存在本质差异。先前的研究表明,尾脊索细胞能抑制成年(而非幼虫)成肌细胞的终末分化。但是,关于成年和幼虫成肌细胞之间的成肌调节因子(MRF)和卫星细胞标记Pax7的表达方式的差异知之甚少。在本研究中,我们比较了两种类型中这些因子的mRNA表达。首先,后肢芽的逆转录聚合酶链反应分析显示,在50-54阶段,肢体芽伸长并且开始形成肌肉时,myf5,myogenin,myod和mrf4依次上调。相比之下,在同一时期,尾巴没有增加。次要的是,这些结果在体外是重复的:成年肌细胞在培养早期可上调myf5,myod和pax7,随后是肌细胞生成素上调和肌管分化,而幼虫成肌细胞则不上调这些基因,并早熟开始肌管分化。第三,成年线虫细胞的存在有效抑制了成年成肌细胞中的myf5上调和早期增殖,这表明,成年线虫细胞通过抑制从Myf5(-)干细胞向Myf5(+)定型的成肌细胞的过渡来抑制成年肌发生。这里提供的所有数据表明myf5上调可能是X.laevis变态过程中激活成年肌发生的良好标准。

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