深入了解fox01在废用性骨骼肌萎缩进展中的作用

Q1 Biochemistry, Genetics and Molecular Biology Advances in biological regulation Pub Date : 2022-08-01 DOI:10.1016/j.jbior.2022.100903
Natalia Vilchinskaya , Erzhena Altaeva , Yulia Lomonosova
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引用次数: 6

摘要

FoxO转录因子的表达在某些形式的萎缩中增加。在去磷酸化状态下,FoxOs通过转录激活e3 -泛素连接酶(如MAFbx/atrogin-1和MuRF1)参与泛素介导的蛋白酶体降解。有详尽的研究表明FoxO3a足以诱导MAFbx/atrogin-1和MuRF-1的表达。相反,在e3 -泛素连接酶激活过程中fox01信号的要求上,数据是相互矛盾的。此外,目前还没有关于fox01在参与生理性肌肉萎缩进展的分子机制中的特殊作用的报道。在这里,我们采用了最广泛使用的微重力/功能卸载啮齿动物模型来刺激废弃性骨骼肌萎缩,如大鼠后肢悬吊(HS)。我们发现,选择性抑制剂AS1842856对FoxO1活性的抑制完全逆转了MuRF-1表达的增加,但在HS上观察到的MAFbx/atrogin-1却没有。此外,我们证明FoxO1诱导骨骼肌中MuRF蛋白家族MuRF-2的另一个e3泛素连接酶的上调。预防HS时MuRF的增加阻碍了NFATc1途径calsarcin-2负调节因子转录本表达的上调,这与MyHC-IId/x和MyHC-IIb mRNA表达的部分逆转有关。重要的是,FoxO1抑制诱导p70S6k磷酸化显著增加,这是蛋白翻译起始的一个重要阶段,伴随着HS大鼠骨骼肌整体蛋白合成的恢复。检测eIF3f表达和eEF2k/eEF2通路,以及其他分别控制翻译起始和延伸的因素,没有发现fox01对它们的活性有任何影响。最后,我们观察到Sesn3的转录水平下降,而Sesn1和Sesn2的转录水平没有下降,这被FoxO1抑制完全逆转。这些数据表明FoxO1信号通路主要通过上调MuRF-1和MuRF-2的表达,促进废用性骨骼肌萎缩的发生,包括MyHC亚型从慢到快的转变。此外,在萎缩条件下,需要抑制FoxO1来恢复Sesn3 mRNA的表达,这可能有助于增强p70S6k活性和恢复蛋白质合成速率。
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Gaining insight into the role of FoxO1 in the progression of disuse-induced skeletal muscle atrophy

Expression of FoxO transcription factors increases during certain forms of atrophy. In a dephosphorylated state, FoxOs participate in ubiquitin-mediated proteasomal degradation through the transcriptional activation of E3-ubiquitin ligases such as MAFbx/atrogin-1 and MuRF1. There is exhaustive research demonstrating that FoxO3a is sufficient to induce MAFbx/atrogin-1 and MuRF-1 expressions. In contrast, the data are conflicting on the requirement of FoxO1 signaling in the activation of the E3-ubiquitin ligases. Moreover, no reports currently exist on the particular role of FoxO1 in the molecular mechanisms involved in the progression of physiological muscle wasting. Here, we have applied the most extensively used rodent model of microgravity/functional unloading to stimulate disuse-induced skeletal muscle atrophy such as rat hindlimb suspension (HS). We showed that inhibition of FoxO1 activity by a selective inhibitor AS1842856 completely reversed an increase in expression of MuRF-1, but not MAFbx/atrogin-1, observed upon HS. Furthermore, we demonstrated that FoxO1 induced upregulation of another E3-ubiquitin-ligase of a MuRF protein family MuRF-2 in skeletal muscle subjected to disuse. Prevention of the MuRF increase upon HS impeded upregulation of transcript expression of a negative regulator of NFATc1 pathway calsarcin-2, which was associated with a partial reversion of MyHC-IId/x and MyHC-IIb mRNA expressions. Importantly, FoxO1 inhibition induced a marked increase in p70S6k phosphorylation, an important stage in the initiation of protein translation, concomitant with the restoration of global protein synthesis in the skeletal muscle of the HS rats. Examination of eIF3f expression and the eEF2k/eEF2 pathway, other factors controlling translation initiation and elongation respectively, did not reveal any impact of FoxO1 on their activity. Lastly, we observed a decrease in transcript levels of Sesn3, but not Sesn1 and Sesn2, upon disuse, which was completely reversed by FoxO1 inhibition. These data demonstrate that FoxO1 signaling contributes to the development of disuse-induced skeletal muscle atrophy, including slow to fast MyHC isoform shift, mostly through upregulation of MuRF-1 and MuRF-2 expression. Furthermore, FoxO1 inhibition is required to recover Sesn3 mRNA expression in atrophic conditions, which likely contributes to the enhanced p70S6k activity and restoration of the protein synthesis rate.

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来源期刊
Advances in biological regulation
Advances in biological regulation Biochemistry, Genetics and Molecular Biology-Molecular Medicine
CiteScore
8.90
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0.00%
发文量
41
审稿时长
17 days
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