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Conserved and divergent functions of Nfix in skeletal muscle development during vertebrate evolution

机译:Nfix在脊椎动物进化过程中在骨骼肌发育中的保守和发散功能

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During mouse skeletal muscle development, the Nfix gene has a pivotal role in regulating fetal-specific transcription. Zebrafish and mice share related programs for muscle development, although zebrafish develops at a much faster rate. In fact, although mouse fetal muscle fibers form after 15 days of development, in fish secondary muscle fibers form by 48 hours post-fertilization in a process that until now has been poorly characterized mechanically. In this work, we studied the zebrafish ortholog Nfix (nfixa) and its role in the proper switch to the secondary myogenic wave. This allowed us to highlight evolutionarily conserved and divergent functions of Nfix. In fact, the knock down of nfixa in zebrafish blocks secondary myogenesis, as in mouse, but also alters primary slow muscle fiber formation. Moreover, whereas Nfix mutant mice are motile, nfixa knockdown zebrafish display impaired motility that probably depends upon disruption of the sarcoplasmic reticulum. We conclude that, during vertebrate evolution, the transcription factor Nfix lost some specific functions, probably as a consequence of the different environment in which teleosts and mammals develop.
机译:在小鼠骨骼肌发育过程中,Nfix基因在调节胎儿特异性转录中起关键作用。斑马鱼和小鼠共享有关肌肉发育的程序,尽管斑马鱼的发育速度要快得多。实际上,尽管老鼠的胎儿肌肉纤维在发育15天后就形成了,但在鱼中,受精后48小时就形成了继发性肌肉纤维,这一过程到目前为止在机械上还没有很好的表征。在这项工作中,我们研究了斑马鱼直系同源物Nfix(nfixa)及其在正确切换到次级成肌波中的作用。这使我们能够强调Nfix在进化上保守和发散的功能。实际上,与小鼠一样,在斑马鱼中击倒nfixa会阻止继发性肌生成,但也会改变初级慢肌纤维的形成。此外,尽管Nfix突变小鼠具有运动能力,但nfixa敲低斑马鱼显示出运动能力受损,这可能取决于肌浆网的破坏。我们得出的结论是,在脊椎动物进化过程中,转录因子Nfix失去了某些特定功能,这可能是硬骨鱼和哺乳动物在不同环境中生长的结果。

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