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肌肉生长抑制素通过抑制 TORC1 信号通路和促进泛素-蛋白酶体和自噬溶酶体降解途径诱导鳟鱼肌管萎缩。

Myostatin induces atrophy of trout myotubes through inhibiting the TORC1 signaling and promoting Ubiquitin-Proteasome and Autophagy-Lysosome degradative pathways.

机构信息

INRA, UMR1067 Nutrition Métabolisme et Aquaculture, Pôle d'hydrobiologie, CD918, F-64310 St-Pée-sur-Nivelle, France.

出版信息

Gen Comp Endocrinol. 2013 Jun 1;186:9-15. doi: 10.1016/j.ygcen.2013.02.008. Epub 2013 Feb 28.

Abstract

Myostatin (MSTN) is well known as a potent inhibitor of muscle growth in mammals and has been shown to both inhibit the growth promoting TORC1 signaling pathway and promote Ubiquitin-Proteasomal and Autophagy-Lysosomal degradative routes. In contrast, in non-mammalian species, despite high structural conservation of MSTN sequence, functional conservation is only assumed. Here, we show that treatment of cultured trout myotubes with human recombinant MSTN (huMSTN) resulted in a significant decrease of their diameter by up to 20%, validating the use of heterologous huMSTN in our in vitro model to monitor the processes by which this growth factor promotes muscle wasting in fish. Accordingly, huMSTN stimulation prevented the full activation by IGF1 of the TORC1 signaling pathway, as revealed by the analysis of the phosphorylation status of 4E-BP1. Moreover, the levels of the proteasome-dependent protein Atrogin1 exhibited an increase in huMSTN treated cells. Likewise, we observed a stimulatory effect of huMSTN treatment on the levels of LC3-II, the more reliable marker of the Autophagy-Lysosomal degradative system. Overall, these results show for the first time in a piscine species the effect of MSTN on several atrophic and hypertrophic pathways and support a functional conservation of this growth factor between lower and higher vertebrates.

摘要

肌肉生长抑制素(MSTN)是一种已知的强效哺乳动物肌肉生长抑制剂,已被证明既能抑制促进生长的 TORC1 信号通路,又能促进泛素-蛋白酶体和自噬溶酶体降解途径。相比之下,在非哺乳动物物种中,尽管 MSTN 序列具有高度的结构保守性,但功能保守性仅被假定存在。在这里,我们证明了用重组人 MSTN(huMSTN)处理培养的鳟鱼肌管会导致其直径显著减小达 20%,这验证了在我们的体外模型中使用异源 huMSTN 来监测这种生长因子促进鱼类肌肉消耗的过程。因此,huMSTN 刺激阻止了 IGF1 对 TORC1 信号通路的完全激活,这可以通过分析 4E-BP1 的磷酸化状态来揭示。此外,在 huMSTN 处理的细胞中,蛋白酶体依赖性蛋白 Atrogin1 的水平增加。同样,我们观察到 huMSTN 处理对 LC3-II 水平的刺激作用,LC3-II 是自噬溶酶体降解系统的更可靠标志物。总的来说,这些结果首次在鱼类物种中显示了 MSTN 对几种萎缩和肥大途径的影响,并支持这种生长因子在低等和高等脊椎动物之间的功能保守性。

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