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快肌和慢肌表达乙酰胆碱酯酶分子形式的共同基本特征。

Fast and slow skeletal muscles express a common basic profile of acetylcholinesterase molecular forms.

作者信息

Boudreau-Larivière C, Gisiger V, Michel R N, Hubatsch D A, Jasmin B J

机构信息

Department of Physiology, Faculty of Medicine, University of Ottawa, Ontario, Canada.

出版信息

Am J Physiol. 1997 Jan;272(1 Pt 1):C68-76. doi: 10.1152/ajpcell.1997.272.1.C68.

Abstract

Recent evidence suggests that the high content of acetylcholinesterase (AChE) globular form G4, characteristic of fast muscles, is controlled by phasic high-frequency activity performed by these muscles. This indicates that inactive, though still innervated, fast muscles should be devoid of their characteristic G4 pool. Accordingly, in the absence of phasic activity, both fast and slow muscles should exhibit a common basic profile of AChE molecular forms of the slow type. We first tested this hypothesis by examining the AChE content in cultures of myotubes obtained from the fusion of satellite cells originating from fast and slow muscles. These two cell populations produced AChE molecular-form profiles of the slow type characterized by modest levels of G4 together with an increased proportion of the asymmetric forms A8 relative to A12. Second, we determined the impact of muscle paralysis on the specific content of AChE molecular forms of adult rat fast and slow muscles. Complete paralysis of hindlimb muscles was achieved by chronic superfusion of tetrodotoxin (TTX) onto the sciatic nerve. Ten days after TTX inactivation, the distributions of AChE molecular forms of both fast extensor digitorum longus (EDL) and plantaris muscles were transformed into ones resembling the slow soleus, the latter showing no significant modifications in its AChE profile. Finally, we investigated the impact of nerve-mediated phasic high-frequency stimulation of TTX-inactivated fast and slow muscles on the content of AChE molecular forms. This stimulation produced a profile of AChE molecular forms similar to that observed in control EDL muscles, indicating that phasic activation counteracted the TTX-induced transformation in the distribution of AChE molecular forms in fast EDL muscles. Together, these results are consistent with the proposal that adult fast muscles constitutively express a basic profile of AChE molecular forms of the type displayed by slow muscles, onto which varying levels of G4 are added according to the amount of phasic activity performed by the muscles.

摘要

最近的证据表明,快速肌肉特有的乙酰胆碱酯酶(AChE)球状形式G4的高含量受这些肌肉进行的阶段性高频活动控制。这表明,无活性但仍受神经支配的快速肌肉应缺乏其特有的G4池。因此,在没有阶段性活动的情况下,快速和慢速肌肉都应表现出慢速型AChE分子形式的共同基本特征。我们首先通过检查从快速和慢速肌肉来源的卫星细胞融合获得的肌管培养物中的AChE含量来检验这一假设。这两种细胞群体产生的是慢速型AChE分子形式特征,其特点是G4水平适中,且不对称形式A8相对于A12的比例增加。其次,我们确定了肌肉麻痹对成年大鼠快速和慢速肌肉AChE分子形式的特定含量的影响。通过将河豚毒素(TTX)长期灌注到坐骨神经上,实现了后肢肌肉的完全麻痹。TTX失活10天后,快速趾长伸肌(EDL)和比目鱼肌的AChE分子形式分布都转变为类似于慢速比目鱼肌的分布,而后者的AChE特征没有显著变化。最后,我们研究了神经介导的对TTX失活的快速和慢速肌肉的阶段性高频刺激对AChE分子形式含量的影响。这种刺激产生的AChE分子形式特征与对照EDL肌肉中观察到的相似,表明阶段性激活抵消了TTX诱导的快速EDL肌肉中AChE分子形式分布的转变。总之,这些结果与以下观点一致:成年快速肌肉组成性地表达慢速肌肉所显示类型的AChE分子形式的基本特征,并根据肌肉进行的阶段性活动量添加不同水平的G4。

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