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MRF4 gene expression in Xenopus embryos and aneural myofibers.

机译:MRF4基因在非洲爪蟾胚胎和非神经肌纤维中的表达。

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摘要

Vertebrate embryos express the transcription factor MRF4 during skeletal muscle differentiation. Previous studies of MRF4 expression in embryonic Xenopus laevis and its response to muscle denervation in adults have led to the suggestion that its transcription may be activated in myotomes and in multinucleate myofibers through an interaction with the motor nerves. We tested this hypothesis by assaying for MRF4 gene transcripts in early neurula stage embryos, beginning before the appearance of neurons. MRF4 transcripts were detectable by reverse transcriptase-polymerase chain reaction (RT-PCR) from at least stage 13-14, well before the differentiation of either nerves or myocytes. We also tested the nerve-dependence of MRF4 gene expression in multinucleate myofibers by comparing transcript levels between interhyoideus muscles in normal larvae and muscles whose motor innervation had been prevented through surgical removal of the brain before cranial motor axon outgrowth. RT-PCR demonstrated similar MRF4 transcript levels in the aneural muscles and controls. These results fail to support the hypothesis that MRF4 gene expression is triggered or is significantly up-regulated in myogenic cells by signals from motor axons. Copyright 2003 Wiley-Liss, Inc.
机译:脊椎动物胚胎在骨骼肌分化过程中表达转录因子MRF4。以前在成年非洲爪蟾中表达MRF4及其对成年肌肉神经支配反应的研究已经表明,其转录可能通过与运动神经的相互作用而在肌体和多核肌纤维中被激活。我们通过检测神经元早期胚胎中的MRF4基因转录本,从神经元出现之前开始,检验了这一假设。至少在神经或肌细胞分化之前,至少从13-14阶段可通过逆转录聚合酶链反应(RT-PCR)检测到MRF4转录本。我们还通过比较正常幼虫的舌骨间肌与颅神经运动轴突生长之前通过手术切除大脑来防止运动神经支配的肌肉之间的转录水平,来测试多核肌纤维中MRF4基因表达的神经依赖性。 RT-PCR在神经肌肉和对照中显示出相似的MRF4转录水平。这些结果不能支持以下假设:运动轴突的信号触发了MRF4基因表达在成肌细胞中被触发或显着上调。版权所有2003 Wiley-Liss,Inc.

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