首页> 外文期刊>The Journal of Physiology >Expression profiling identifies dysregulation of myosin heavy chains IIb and IIx during limb immobilization in the soleus muscles of old rats.
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Expression profiling identifies dysregulation of myosin heavy chains IIb and IIx during limb immobilization in the soleus muscles of old rats.

机译:表达谱分析表明在老龄大鼠的比目鱼肌肢体固定期间肌球蛋白重链IIb和IIx失调。

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摘要

Aged individuals suffer from multiple dysfunctions during skeletal muscle atrophy. The purpose of this study was to determine differential changes in gene expression in atrophied soleus muscle induced by hindlimb immobilization in young (3-4 months) and old (30-31 months) rats. The hypothesis was that differentially expressed mRNAs with age-atrophy interactions would reveal candidates that induce loss of function responses in aged animals. Each muscle was applied to an independent set of Affymetrix micoarrays, with 385 differentially expressed mRNAs with atrophy and 354 age-atrophy interactions detected by two-factor ANOVA (alpha of 0.05 with a Bonferroni adjustment). Functional trends were observed for 23 and 15 probe sets involved in electron transport and the extracellular matrix, respectively, decreasing more in the young than in the old. Other functional categories with atrophy in both ages included chaperones, glutathione-S-transferases, the tricarboxylic acid cycle, reductions in Z-line-associated proteins and increases in probe sets for protein degradation. Surprisingly, myosin heavy chain IIb and IIx mRNAs were suppressed in the atrophied soleus muscle of old rats as opposed to the large increases in the young animals (16- and 25-fold, respectively, with microarrays, and 61- and 68-fold, respectively, with real-time PCR). No significant changes were observed in myosin heavy chain IIb and IIx mRNA with micoarrays in the atrophied soleus muscles of old rats, but they were found to increase six- and fivefold, respectively, with real-time PCR. Therefore, deficiencies in pre-translational signals that normally upregulate myosin heavy chain IIb and IIx mRNAs during atrophy may exist in the soleus muscle of old animals.
机译:老年人在骨骼肌萎缩期间患有多种功能障碍。这项研究的目的是确定年轻(3-4个月)和老龄(30-31个月)大鼠后肢固定引起的萎缩比目鱼肌基因表达差异的变化。假说是,具有年龄-萎缩相互作用的差异表达的mRNA将揭示候选物,该候选物诱导衰老动物的功能反应丧失。将每只肌肉应用于一组独立的Affymetrix微阵列,通过两因素ANOVA检测到385种具有萎缩差异表达的mRNA和354种年龄-萎缩相互作用(经Bonferroni调整的α为0.05)。观察到涉及电子传输和细胞外基质的23种和15种探针组的功能趋势,年轻时的下降趋势大于老时的下降趋势。在两个年龄段均出现萎缩的其他功能类别包括伴侣蛋白,谷胱甘肽-S-转移酶,三羧酸循环,Z线相关蛋白的减少以及蛋白质降解探针组的增加。令人惊讶的是,老龄大鼠萎缩的比目鱼肌中的肌球蛋白重链IIb和IIx mRNA受到抑制,而幼小动物的大量增加(分别为微阵列的16和25倍,61和68倍,分别使用实时PCR)。在老年大鼠萎缩的比目鱼肌中用微阵列未见肌球蛋白重链IIb和IIx mRNA的显着变化,但通过实时PCR发现它们分别增加了六倍和五倍。因此,在老动物的比目鱼肌中可能存在通常在萎缩过程中通常上调肌球蛋白重链IIb和IIx mRNA的翻译前信号的缺陷。

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