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蛋白质组学分析揭示了小鼠比目鱼肌和趾长伸肌对超重力的不同反应。

Proteomic analysis revealed different responses to hypergravity of soleus and extensor digitorum longus muscles in mice.

机构信息

Advanced Medical Research Center, Yokohama City University, Kanagawa, Japan.

Department of Physiology, Gifu University Graduate School of Medicine, Gifu, Japan.

出版信息

J Proteomics. 2020 Apr 15;217:103686. doi: 10.1016/j.jprot.2020.103686. Epub 2020 Feb 12.

Abstract

Investigating protein abundance profiles is important to understand the differences in the slow and fast skeletal muscle characteristics. The profiles in soleus (Sol) and extensor digitorum longus (EDL) muscles in mice exposed to 1 g or 3 g for 28 d were compared. The biological implications of the profiles revealed that hypergravity exposure activated a larger number of pathways involved in protein synthesis in Sol. In contrast, the inactivation of signalling pathways involved in oxidative phosphorylation were conspicuous in EDL. These results suggested that the reactivity of molecular pathways in Sol and EDL differed. Additionally, the levels of spermidine synthase and spermidine, an important polyamine for cell growth, increased in both muscles following hypergravity exposure, whereas the level of spermine oxidase (SMOX) increased in EDL alone. The SMOX level was negatively correlated with spermine content, which is involved in muscle atrophy, and was higher in EDL than Sol, even in the 1 g group. These results indicated that the contribution of SMOX to the regulation of spermidine and spermine contents in Sol and EDL differed. However, contrary to expectations, the difference in the SMOX level did not have a significant impact on the growth of these muscles following hypergravity exposure. SIGNIFICANCE: The skeletal muscle-specific protein abundance profiles result in differences in the characteristics of slow and fast skeletal muscles. We investigated differences in the profiles in mouse slow-twitch Sol and fast-twitch EDL muscles following 28-d of 1 g and 3 g exposure by LC-MS/MS analysis and label-free quantitation. A two-step solubilisation of the skeletal muscle proteins increased the coverage of proteins identified by LC-MS/MS analysis. Additionally, this method reduced the complexity of samples more easily than protein or peptide fractionation by SDS-PAGE and offline HPLC while maintaining the high operability of samples and was reproducible. A larger number of hypergravity-responsive proteins as well as a prominent increase in the wet weights was observed in Sol than EDL muscles. The biological implications of the difference in the protein abundance profiles in 1 g and 3 g groups revealed that the reactivity of each molecular pathway in Sol and EDL muscles to hypergravity exposure differed significantly. In addition, we found that the biosynthetic and interconversion pathway of polyamines, essential factors for cell growth and survival in mammals, was responsive to hypergravity exposure; spermidine and spermine contents in Sol and EDL muscles were regulated by different mechanisms even in the 1 g group. However, our results indicated that the difference in the mechanism regulating polyamine contents is unlikely to have a significant effect on the differences in Sol and EDL muscle growth following hypergravity exposure.

摘要

研究蛋白质丰度谱对于了解慢肌和快肌特征的差异很重要。将暴露于 1g 或 3g 重力 28 天的比目鱼肌(Sol)和趾长伸肌(EDL)肌肉的蛋白质丰度谱进行了比较。蛋白质丰度谱的生物学意义表明,超重力暴露激活了更多参与 Sol 中蛋白质合成的途径。相比之下,参与氧化磷酸化的信号通路失活在 EDL 中很明显。这些结果表明,Sol 和 EDL 中分子途径的反应性不同。此外,在两种肌肉中,超重力暴露后多胺合成酶和精胺的水平(细胞生长的重要多胺)都增加,而仅在 EDL 中,亚精胺氧化酶(SMOX)的水平增加。SMOX 水平与肌肉萎缩有关的 spermine 含量呈负相关,并且在 EDL 中高于 Sol,即使在 1g 组中也是如此。这些结果表明,SMOX 对 Sol 和 EDL 中 spermidine 和 spermine 含量的调节作用不同。然而,出乎意料的是,SMOX 水平的差异并没有对超重力暴露后这些肌肉的生长产生显著影响。意义:骨骼肌特异性蛋白质丰度谱导致慢肌和快肌特征的差异。我们通过 LC-MS/MS 分析和无标记定量研究了小鼠慢肌 Sol 和快肌 EDL 肌肉在 1g 和 3g 暴露 28 天后的蛋白质丰度谱差异。两步 Sol 溶解骨骼肌蛋白增加了 LC-MS/MS 分析鉴定的蛋白质的覆盖率。此外,与 SDS-PAGE 和离线 HPLC 进行的蛋白质或肽分级相比,该方法更容易降低样品的复杂性,同时保持样品的高可操作性,并且具有重现性。在 Sol 肌肉中观察到比 EDL 肌肉更多的超重力反应蛋白以及湿重的明显增加。1g 和 3g 组蛋白质丰度谱差异的生物学意义表明,Sol 和 EDL 肌肉中每个分子途径对超重力暴露的反应性有显著差异。此外,我们发现多胺的生物合成和互变途径,哺乳动物细胞生长和存活所必需的因素,对超重力暴露有反应;即使在 1g 组中,Sol 和 EDL 肌肉中的 spermidine 和 spermine 含量也受到不同机制的调节。然而,我们的结果表明,调节多胺含量的机制差异不太可能对超重力暴露后 Sol 和 EDL 肌肉生长的差异产生重大影响。

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