首页> 外文期刊>American Journal of Physiology >FoxO1 is not a key transcription factor in the regulation of myostatin (mstn-1a and mstn-1b) gene expression in trout myotubes.
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FoxO1 is not a key transcription factor in the regulation of myostatin (mstn-1a and mstn-1b) gene expression in trout myotubes.

机译:FoxO1不是鳟鱼肌管中肌生长抑制素(mstn-1a和mstn-1b)基因表达调控的关键转录因子。

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摘要

In mammals, much evidence has demonstrated the important role of myostatin (MSTN) in regulating muscle mass and identified the transcription factor forkhead box O (FoxO) 1 as a key regulator of its gene expression during atrophy. However, in trout, food deprivation leads to muscle atrophy without an increase of the expression of mstn genes in the muscle. We therefore studied the relationship between FoxO1 activity and the expression of both mstn genes (mstn1a and mstn1b) in primary culture of trout myotubes. To this aim, two complementary studies were undertaken. In the former, FoxO1 protein activity was modified with insulin-like growth factor-I (IGF-I) treatment, and the consequences on the expression of both mstn genes were monitored. In the second experiment, the expression of both studied genes was modified with growth hormone (GH) treatment, and the activation of FoxO1 protein was investigated. We found that IGF-I induced the phosphorylation of FoxO1 and FoxO4. Moreover, under IGF-I stimulation, FoxO1 was no longer localized in the nucleus, indicating that this growth factor inhibited FoxO1 activity. However, IGF-I treatment had no effect on mstn1a and mstn1b expression, suggesting that FoxO1 would not regulate the expression of mstn genes in trout myotubes. Furthermore, the treatment of myotubes with GH decreased the expression of both mstn genes but has no effect on the phosphorylation of FoxO1, FoxO3, and FoxO4 nor on the nuclear translocation of FoxO1. Altogether, our results showed that mstn1a and mstn1b expressions were not associated with FoxO activity, indicating that FoxO1 is likely not a key regulator of mstn genes in trout myotubes.
机译:在哺乳动物中,大量证据证明了肌肉生长抑制素(MSTN)在调节肌肉质量中的重要作用,并将转录因子叉头盒O(FoxO)1鉴定为萎缩过程中其基因表达的关键调节剂。但是,在鳟鱼中,食物缺乏会导致肌肉萎缩而不增加肌肉中mstn基因的表达。因此,我们研究了鳟鱼肌管原代培养中FoxO1活性与两个mstn基因(mstn1a和mstn1b)表达之间的关系。为了这个目的,进行了两项补充研究。在前者中,FoxO1蛋白活性通过胰岛素样生长因子-I(IGF-I)处理得到修饰,并监测了两种mstn基因表达的后果。在第二个实验中,用生长激素(GH)处理修饰了两个研究基因的表达,并研究了FoxO1蛋白的激活。我们发现IGF-I诱导了FoxO1和FoxO4的磷酸化。此外,在IGF-I刺激下,FoxO1不再位于细胞核中,表明该生长因子抑制了FoxO1的活性。但是,IGF-I处理对mstn1a和mstn1b的表达没有影响,这表明FoxO1不会调节鳟鱼肌管中mstn基因的表达。此外,用GH处理肌管可降低mstn基因的表达,但对FoxO1,FoxO3和FoxO4的磷酸化或FoxO1的核易位没有影响。总之,我们的结果表明mstn1a和mstn1b的表达与FoxO活性无关,表明FoxO1可能不是鳟鱼肌管中mstn基因的关键调节因子。

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