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首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >The Role of GSK-3β Phosphorylation in the Regulation of Slow Myosin Expression in Soleus Muscle during Functional Unloading
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The Role of GSK-3β Phosphorylation in the Regulation of Slow Myosin Expression in Soleus Muscle during Functional Unloading

机译:GSK-3β磷酸化在功能卸载期间Soleus肌肉缓慢肌球蛋白表达调控中的作用

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AbstractSkeletal muscle myosin phenotype (i.e., the predominance in the muscle of a particular isoform or isoforms of myosin heavy chains (MyHC)) determines the properties of muscle, such as contraction speed and fatigue. The aim of this study was to identify the functional relationship between the decrease of the nitric oxide (NO) content, the GSK-3β phosphorylation (leading to the GSK-3β activation), the NFATc1 amount in the muscle nuclei, and the MyHC I(β) isoform expression in the rat soleus muscle under gravitational unloading. Male Wistar rats were divided into five groups: the vivarium control group; the group of animals with a 7-day hind limb suspension receiving placebo; the group of animals with a hind limb suspension receiving a NO donor (L-arginine); the group of animals with a hind limb suspension receiving a NO donor and a NO-synthase inhibitor (L-NAME); and the group of animals with a hind limb suspension receiving a GSK-3β inhibitor. We have shown that a 7-day unloading leads to a NO content decrease in the soleus muscle, and this effect is prevented byL-arginine administration. In addition, administration ofL-arginine blocks the GSK-3β phosphorylation decrease, NFATc1 export from the muscle nuclei, and MyHC I(β) expression decrease caused by unloading. TheL-arginine effect in each case can be blocked by the NO-synthase inhibitor. Administration of the GSK-3β inhibitor prevents the unloading-induced NFATc1 export from the muscle nuclei and a decrease of the MyHC I(β) expression. The prevention of the MyHC I(β) expression decrease and the NFATc1 export from the nucleus by the selective GSK-3β inhibition confirms the hypothesis on the NO influence on the MyHC I(β) expression and the NFATc1 export from the nucleus via the GSK-3β phosphorylation decrease. Thus, the NO level decrease in the rat soleus muscle in unloading leads to the GSK-3β activation, which in turn, promotes the NFATc1 export from the nucleus and stabilization of the fast myosin phenotype.]]>
机译:<![cdata [ <标题>抽象 ara>骨骼肌myosin表型(即,特定同种型的肌肉中的肌肉或肌球蛋白的肌肉中的姿势链(MyHC))确定肌肉的性质,例如收缩速度和疲劳。本研究的目的是鉴定一氧化氮(NO)含量的降低,GSK-3β磷酸化(导致GSK-3β活化),肌肉核中的NFATC1量,以及MYHC I之间的功能关系。 (β)在重力卸料下大鼠肌肌中的同种型表达。雄性Wistar大鼠分为五组:Vivarium对照组;一群动物,具有7天的后肢悬架接收安慰剂;具有后肢悬浮液的动物组,接受无助力(<强调=“斜体”> l -Arginine);具有后肢悬浮液的动物组,接受无助剂和无合成酶抑制剂(<重点型=“斜体”> L -Name);以及具有后肢悬浮液的动物组,接受GSK-3β抑制剂。我们已经表明,7天的卸载导致Soleus肌肉没有含量减少,并且通过<重点型=“斜体”> L -Arginine给药来防止这种效果。此外,<重点型=“斜体”> L -Arginine阻断GSK-3β磷酸化降低,NFATC1从肌肉核,MyHC I(β)表达通过卸载引起的降低。 <重点型=“斜斜”> L -Arp幂效应在每种情况下可以由无合成酶抑制剂堵塞。 GSK-3β抑制剂的施用可以防止卸载诱导的NFATC1从肌肉核和MyHC I(β)表达的降低。通过选择性GSK-3β抑制,预防MyHC I(β)表达减少,NFATC1从细胞核产生的NFATC1导致对MyHC I(β)表达和NFATC1通过GSK产生的NFATC1导出的假设-3β磷酸化降低。因此,卸载大鼠唯一肌肉的无水平降低导致GSK-3β活化,这反过来促进了从核心的NFATC1导出和快速肌球蛋白表型的稳定化。 ]] >

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