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首页> 外文期刊>Biochemical and Biophysical Research Communications >Suppression of myostatin with vector-based RNA interference causes a double-muscle effect in transgenic zebrafish.
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Suppression of myostatin with vector-based RNA interference causes a double-muscle effect in transgenic zebrafish.

机译:基于载体的RNA干扰抑制肌肉生长抑制素在转基因斑马鱼中引起双重肌肉效应。

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摘要

Myostatin belongs to the transforming growth factor (TGF)-beta superfamily and is a potent negative regulator of skeletal muscle development and growth. We utilized microinjection of an antisense RNA-expressing vector to establish a hereditarily stable myostatin gene knockdown zebrafish strain with a double-muscle phenotype. Real-time PCR and immunostaining revealed that the myostatin messenger (m)RNA and protein levels in homozygous transgenic zebrafish were 33% and 26% those of the non-transgenic controls, respectively. Also, the mRNA levels of myogenic regulatory factor markers such as MyoD, myogenin, Mrf4, and Myf5 were dramatically elevated in myostatin-suppressed transgenic fish compared to the non-transgenic controls. Although there was no significant difference in body length, homozygous transgenic zebrafish were 45% heavier than non-transgenic controls. Histochemical analysis showed that the cross-sectional area of the muscle fiber of homozygous transgenic fish was twice as large as that of non-transgenic controls. This is the first model zebrafish with a hereditarily stable myostatin-suppressed genotype and a double-muscle phenotype.
机译:肌生长抑制素属于转化生长因子(TGF)-β超家族,是骨骼肌发育和生长的有效负调节剂。我们利用显微注射的反义RNA表达载体来建立具有双肌肉表型的遗传稳定的myostatin基因敲除斑马鱼菌株。实时PCR和免疫染色显示,纯合子转基因斑马鱼的肌肉生长抑制素信使(m)RNA和蛋白水平分别为非转基因对照的33%和26%。而且,与非转基因对照相比,在肌生长抑制素抑制的转基因鱼中,肌源性调节因子标记(如MyoD,肌生成素,Mrf4和Myf5)的mRNA水平显着升高。尽管体长没有显着差异,但纯合子转基因斑马鱼比非转基因对照重45%。组织化学分析表明,纯合转基因鱼的肌纤维横截面积是非转基因对照的两倍。这是第一个具有遗传稳定的抑制肌生长抑制素基因型和双肌肉表型的斑马鱼模型。

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