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首页> 外文期刊>Human Molecular Genetics >Gne depletion during zebrafish development impairs skeletal muscle structure and function
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Gne depletion during zebrafish development impairs skeletal muscle structure and function

机译:斑马鱼发育过程中的Gne耗竭会削弱骨骼肌的结构和功能

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GNE Myopathy is a rare recessively inherited neuromuscular disorder caused by mutations in the GNE gene, which codes for the key enzyme in the metabolic pathway of sialic acid synthesis. The process by which GNE mutations lead tomyopathy is not well understood.Byin situ hybridizationandgnepromoter-driven fluorescent transgenic fish generation, we have characterized the spatiotemporal expression pattern of the zebrafish gne gene and have shown that it is highly conserved compared with the human ortholog. We also show the deposition of maternal gne mRNA and maternal GNE protein at the earliest embryonic stage, emphasizing the critical role of gne in embryonic development. Injection of morpholino (MO)-modified antisense oligonucleotides specifically designed to knockdown gne, into one-cell embryos lead to a variety of phenotypic severity. Characterization of the gne knockdown morphants showed a significantly reduced locomotor activity as well asdistortedmuscle integrity, including a reductionin thenumberofmusclemyofibers, even in mild or intermediate phenotype morphants. These findings were further confirmed by electron microscopy studies, where large gaps between sarcolemmas were visualized, although normal sarcomeric structures were maintained. These results demonstrate a critical novel role for gne in embryonic development and particularly in myofiber development, muscle integrity and activity.
机译:GNE肌病是一种罕见的隐性遗传性神经肌肉疾病,由GNE基因突变引起,该基因编码唾液酸合成代谢途径中的关键酶。 GNE突变导致肌病的过程尚未完全了解。通过原位杂交和基因启动子驱动的荧光转基因鱼的生成,我们已经表征了斑马鱼基因的时空表达模式,并表明与人类直系同源物相比,它是高度保守的。我们还显示了母体gne mRNA和母体GNE蛋白在最早的胚胎期沉积,强调了gne在胚胎发育中的关键作用。专门设计用来敲除Gne的吗啉代(MO)修饰的反义寡核苷酸注入单细胞胚胎会导致多种表型严重性。 Gne抑制型吗啡酮的表征显示,即使在轻度或中等表型吗啡酮中,运动活性也显着降低,并且肌肉完整性受到破坏,包括肌纤维数量减少。电子显微镜研究进一步证实了这些发现,尽管维持了正常的肌节结构,但可视化了肉瘤之间的大间隙。这些结果证明基因改造在胚胎发育中,特别是在肌纤维发育,肌肉完整性和活动中起着至关重要的新作用。

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