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Modulation of transglutaminase expression in rat skeletal muscle by induction of atrophy and endurance training.

机译:通过萎缩和耐力训练的诱导来调节大鼠骨骼肌中转谷氨酰胺酶的表达。

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摘要

The persistence of muscle fiber number regardless of size reduction in muscle atrophy has not yet been fully explained. For the mechanism inherent in skeletal muscle tissues for preventing cellular death, the protective function of muscle tissue through transglutaminases has been tested, since the enzyme is responsible for structural stabilization and participates in signal transduction. In the present experiment, hindlimb suspension for two weeks caused a marked muscle atrophy in Wistar female rats. Comparison of muscle weight and histological analysis showed that suspension-induced atrophy in the hindlimb was more prominent in the soleus muscle, comprised mainly of type I fiber than that in the plantaris muscle of type II fibers. The immunohistochemical analysis with antitransglutaminase C antibody (anti TGase C Ab) showed that some atrophic bundles of soleus muscle were positively reacted with the antibody. The anti-TGase C Ab-reactive substances were observed to disappear significantly after endurance exercise, indicating their characteristic atrophy-dependency. The enzymatic analysis of transglutaminase showed the increase in activity in the atrophic soleus muscle tissue, compared with that in the normal or exercise-trained muscle tissues. From these results, the expression of TGase in the atrophic muscle is suggested to be the possible marker for muscle atrophy and its expression is probably related with the protective mechanism of the muscle tissue to prevent further cellular damage in the atrophic process.
机译:肌肉纤维数目的持续性与肌肉萎缩的大小减少无关,尚未得到充分的解释。对于骨骼肌组织固有的防止细胞死亡的机制,已经测试了通过转谷氨酰胺酶对肌肉组织的保护功能,因为该酶负责结构稳定并参与信号转导。在本实验中,后肢悬吊两周导致Wistar雌性大鼠出现明显的肌肉萎缩。肌肉重量和组织学分析的比较表明,悬吊引起的后肢萎缩在比目鱼肌中更为突出,比目鱼肌主要由I型纤维组成,而比plant肌的II型纤维更明显。用抗转谷氨酰胺酶C抗体(抗TGase C Ab)进行的免疫组织化学分析显示,比目鱼肌的某些萎缩束与该抗体呈阳性反应。耐力运动后,观察到抗TGase C Ab反应性物质明显消失,表明其特征性的萎缩依赖性。谷氨酰胺转移酶的酶促分析表明,与正常或运动训练的肌肉组织相比,萎缩性比目鱼肌组织的活性增加。从这些结果来看,TGase在萎缩性肌肉中的表达被认为是肌肉萎缩的可能标志物,其表达可能与肌肉组织的保护机制有关,以防止在萎缩性过程中进一步的细胞损伤。

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