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首页> 外文期刊>Physiological Research >Expression of the skeletal calsequestrin isoform in normal and regenerated skeletal muscles and in the hearts of rats with altered thyroid status
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Expression of the skeletal calsequestrin isoform in normal and regenerated skeletal muscles and in the hearts of rats with altered thyroid status

机译:正常状态和再生状态的骨骼肌以及甲状腺状态改变的大鼠心脏中骨骼肌钙调蛋白同工型的表达

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We have investigated expression of skeletal calsequestrin (CSQ1) and fiber type composition in normal and regenerated fast and slow skeletal muscles and in the left heart ventricles of euthyroid (EU), hypothyroid (HY) and hyperthyroid (TH) adult inbred Lewis strain rats. The CSQ1 level was determined by SDS-PAGE followed by Western blot analysis. CSQ1 gene expression was assessed using reverse transcription and subsequent real time polymerase chain reaction. Muscle regeneration was achieved by intramuscular grafting of either soleus or extensor digitorum longus (EDL) from 3-to 4-week-old rats to either EDL or soleus muscle of 2-month-old rats. The fiber type composition was assessed by a stereological method applied to stained muscle cross sections. We found that the protein and mRNA levels for CSQ1 were highest in the EDL muscle, the relative CSQ1 protein levels in the soleus muscle were two times lower and the transcript levels more than 5 times lower compared to the EDL. In the left heart ventricle, protein isoform and CSQ1 transcript were also present, although at protein level, CSQ1 was hardly detectable. TH status increased and HY status decreased the expression of CSQ1 in the EDL, but its relative levels in the soleus and in the heart did not change. The regenerated soleus transplanted into EDL, as well as EDL transplanted into soleus exhibited protein and mRNA levels of CSQ1 corresponding to the host muscle and not to the graft source. TH status increased the percentages of the fastest 2X/D and 2B fibers at the expense of slow type 1 and fast 2A fibers in the EDL and that of fast 2A fibers in the soleus at the expense of slow type 1 fibers. HY status led to converse fiber type changes. We suggest that the observed changes in CSQ1 levels in TH and HY compared to EU rats can be related to fiber type changes caused by alteration of the thyroid status rather than to the direct effect of thyroid hormones on CSQ1 gene expression.
机译:我们调查了正常和再生的快,慢速骨骼肌以及正常甲状腺(EU),甲状腺功能减退(HY)和甲状腺功能亢进(TH)成年近交路易斯大鼠的左心室中骨骼肌钙调蛋白(CSQ1)和纤维类型组成的表达。 CSQ1水平通过SDS-PAGE测定,然后进行蛋白质印迹分析。使用反转录和随后的实时聚合酶链反应评估CSQ1基因表达。肌肉再生是通过将3至4周龄大鼠的比目鱼肌或趾长伸肌(EDL)肌内移植至2月龄大鼠的EDL或比目鱼肌而实现的。纤维类型组成通过应用于染色的肌肉横截面的立体学方法评估。我们发现,EDL肌肉中CSQ1的蛋白质和mRNA水平最高,比目鱼肌中CSQ1的相对蛋白质水平低2倍,转录本水平比EDL低5倍以上。在左心室中也存在蛋白质同工型和CSQ1转录本,尽管在蛋白质水平上几乎检测不到CSQ1。 TH状态增加而HY状态减少了EDL中CSQ1的表达,但其在比目鱼肌和心脏中的相对水平没有改变。再生的比目鱼移植到EDL中,以及EDL移植到比目鱼中,其CSQ1的蛋白质和mRNA水平与宿主肌肉而不是移植物来源相对应。 TH状态增加了最快的2X / D和2B光纤的百分比,但以EDL中的慢1型和快2A光纤为代价,而比目鱼的快速2A光纤的百分比却以慢1型光纤为代价。 HY状态导致相反的光纤类型变化。我们建议,与EU大鼠相比,TH和HY中CSQ1水平的观察到的变化可能与甲状腺状态改变引起的纤维类型变化有关,而不是与甲状腺激素对CSQ1基因表达的直接影响有关。

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