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首页> 外文期刊>The Journal of Experimental Biology >Expression of myogenic regulatory factors in the muscle-derived electric organ of Sternopygus macrurus.
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Expression of myogenic regulatory factors in the muscle-derived electric organ of Sternopygus macrurus.

机译:成肌调节因子在Sternopygus macrurus的肌肉源性电动器官中的表达。

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In most groups of electric fish, the current-producing cells of electric organs (EOs) derive from striated muscle fibers but retain some phenotypic characteristics of their precursor muscle cells. Given the role of the MyoD family of myogenic regulatory factors (MRFs) in the transcriptional activation of the muscle program in vertebrates, we examined their expression in the electrocytes of the gymnotiform Sternopygus macrurus. We estimated the number of MRF genes in the S. macrurus genome and our Southern blot analyses revealed a single MyoD, myogenin, myf5 and MRF4 gene. Quantitative RT-PCR showed that muscle and EO transcribe all MRF genes. With the exception of MyoD, the endogenous levels of myogenin, myf5 and MRF4 transcripts in electrocytes were greater than those detected in muscle fibers. These data indicate that MRF expression levels are not sufficient to predict the level to which the muscle program is manifested. Qualitative expression analysis of MRF co-regulators MEF2C, Id1 and Id2 also revealed these genes not to be unique to either muscle or EO, and detected similar expression patterns in the two tissues. Therefore, the partial muscle program of the EO is not associated with a partial expression of MRFs or with apparent distinct levels of some MRF co-factors. In addition, electrical inactivation by spinal cord transection (ST) resulted in the up-regulation of some muscle proteins in electrocytes without an accompanying increase in MRF transcript levels or notable changes in the co-factors MEF2C, Id1 and Id2. These findings suggest that the neural regulation of the skeletal muscle program via MRFs in S. macrurus might differ from that of their mammalian counterparts. Together, these data further our understanding of the molecular processes involved in the plasticity of the vertebrate skeletal muscle program that brings about the muscle-like phenotype of the non-contractile electrogenic cells in S. macrurus.
机译:在大多数电鱼群中,电流产生的电子器官细胞(EOs)来自横纹肌纤维,但保留了其前体肌肉细胞的某些表型特征。鉴于MyoD家族的肌源性调节因子(MRFs)在脊椎动物肌肉程序的转录激活中的作用,我们检查了它们在裸齿形Sternopygus macrurus的细胞中的表达。我们估计了S. macrurus基因组中MRF基因的数量,我们的Southern印迹分析揭示了一个单一的MyoD,肌生成素,myf5和MRF4基因。定量RT-PCR显示肌肉和EO转录所有MRF基因。除MyoD之外,细胞中肌生成素,myf5和MRF4转录本的内源性水平高于在肌纤维中检测到的内源性水平。这些数据表明,MRF表达水平不足以预测肌肉程序表现的水平。 MRF共同调节因子MEF2C,Id1和Id2的定性表达分析还显示,这些基因不是肌肉或EO所独有的,并且在两个组织中检测到相似的表达模式。因此,EO的部分肌肉程序与MRF的部分表达或某些MRF辅助因子的明显不同水平无关。此外,通过脊髓横切(ST)进行的电灭活导致细胞中某些肌肉蛋白的上调,而没有伴随MRF转录水平的增加或辅因子MEF2C,Id1和Id2的显着变化。这些发现表明,通过MRF对S. macrurus进行骨骼肌程序的神经调节可能不同于哺乳动物。在一起,这些数据进一步使我们对涉及脊椎动物骨骼肌程序可塑性的分子过程的理解,该过程可导致拟南芥中非收缩性电细胞的肌肉样表型。

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