首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Connexin hemichannels explain the ionic imbalance and lead to atrophy in denervated skeletal muscles
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Connexin hemichannels explain the ionic imbalance and lead to atrophy in denervated skeletal muscles

机译:连接蛋白半通道解释了离子失衡,并导致失神经的骨骼肌萎缩

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Denervated fast skeletal muscles undergo atrophy, which is associated with an increase in sarcolemma permeability and protein imbalance. However, the mechanisms responsible for these alterations remain largely unknown. Recently, a close association between de novo expression of hemichannels formed by connexins 43 and 45 and increase in sarcolemma permeability of denervated fast skeletal myofibers was demonstrated. However, it remains unknown whether these connexins cause the ionic imbalance of denervates fast myofibers. To elucidate the latter and the role of hemichannels formed by connexins (Cx HCs) in denervation-induced atrophy, skeletal myofibers deficient in Cx43 and Cx45 expression (Cx43(fl/fl) Cx45(fl/fl):Myo-Cre mice) and control (Cx43(f1/fl)Cx45(fl/fl) mice) were denervated and several muscle features were systematically analyzed at different postdenervation (PD) times (1, 3, 5, 7 and 14 days). The following sequence of events was found in denervated myofibers of Cx43(fl/fl)Cx45(fl/fl) mice: 1) from day 3 PD, increase in sarcolemmal permeability, 2) from day 5 PD, increases of intracellular Ca2+ and Na+ signals as well as a significant increase in protein synthesis and degradation, yielding a negative protein balance and 3) from day 7 PD, a fall in myofibers cross-section area. All the above alterations were either absent or drastically reduced in denervated myofibers of Cx43(fl/fl)Cx45(fl/fl):Myo-Cre mice. Thus, the denervation-induced Cx HCs expression is an early event that precedes the electrochemical gradient dysregulation across the sarcolemma and critically contributes to the progression of skeletal muscle atrophy. Consequently, Cx HCs could be a therapeutic target to drastically prevent the denervation-induced atrophy of fast skeletal muscles. (C) 2016 Elsevier B.V. All rights reserved.
机译:弯曲的快速骨骼肌发生萎缩,这与肌膜通透性增加和蛋白质失衡有关。但是,造成这些改变的机制在很大程度上仍然未知。最近,证明了由连接蛋白43和45形成的半通道的从头表达与去神经的快速骨骼肌纤维的肌膜通透性增加之间密切相关。然而,这些连接蛋白是否会引起去神经快肌纤维的离子失衡仍是未知的。为了阐明后者以及连接蛋白(Cx HCs)形成的半通道在神经支配性萎缩中的作用,骨骼肌纤维缺乏Cx43和Cx45表达(Cx43(fl / fl)Cx45(fl / fl):Myo-Cre小鼠)和使对照(Cx43(f1 / fl)Cx45(fl / fl)小鼠)失神经,并在不同的去神经后(PD)时间(1、3、5、7和14天)系统分析几种肌肉特征。在Cx43(fl / fl)Cx45(fl / fl)小鼠的失神经肌纤维中发现以下事件序列:1)从PD第3天开始,肌膜通透性增加,2)从PD第5天开始,细胞内Ca2 +和Na +增加信号以及蛋白质合成和降解的显着增加,从而产生负蛋白质平衡,并且3)从第7天PD开始,即肌纤维横截面积的下降。在Cx43(fl / fl)Cx45(fl / fl):Myo-Cre小鼠的失神经肌纤维中,以上所有改变均不存在或显着减少。因此,去神经支配的Cx HCs表达是一个早期事件,发生在跨肌膜的电化学梯度失调之前,并且对骨骼肌萎缩的进展至关重要。因此,Cx HCs可以成为彻底预防失神经引起的快速骨骼肌萎缩的治疗靶标。 (C)2016 Elsevier B.V.保留所有权利。

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