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神经对兔快慢型骨骼肌中乙酰胆碱酯酶分子形式表达的影响。

Neural influence on the expression of acetylcholinesterase molecular forms in fast and slow rabbit skeletal muscles.

作者信息

Bacou F, Vigneron P

机构信息

Unité Différenciation cellulaire et Croissance, INRA-ENSA, Montpellier, France.

出版信息

Dev Biol. 1991 Jun;145(2):356-66. doi: 10.1016/0012-1606(91)90134-o.

Abstract

With the aim of investigating the roles of motor innervation and activity on muscle characteristics, we studied the molecular forms of acetylcholinesterase (AChE) in fast-twitch (semimembranosus accessorius; SMa) and slow-twitch (semimembranosus proprius; SMp) muscles of the rabbit. We have shown that SMa and SMp express different patterns and tissue distribution of AChE forms and that the effect of long denervation varies with age. Three principal findings concerning expression of AChE molecular forms emerge from these studies. (1) The activity of AChE and the pattern of its molecular forms are particularly altered in adult denervated SMa and SMp muscles. AChE activity increases by 10-fold in both muscles, but asymmetric forms disappear in SMa and increase by 20-fold in SMp muscles. A similar alteration of AChE is found after tenotomy of these muscles, showing that the effect of denervation may be partly due to suppression of muscle activity. (2) The different changes occurring in the composition of AChE molecular forms in adult denervated SMa and SMp muscles are consistent with fluorescent staining with anti-AChE monoclonal antibodies and with DBA or VVA lectins, which bind to AChE asymmetric, collagen-tailed forms. These lectins poorly stain denervated SMa muscle surfaces but intensely stain neuromuscular junctions and extrasynaptic areas in denervated SMp muscle. (3) In contrast with the adult, denervation of 1-day-old muscles does not markedly modify the total amount of AChE or the proportions of its molecular forms, despite dramatic effects on muscle structure. These results are supported by studies of labeling with fluorescent DBA: the lectin only slightly stains the muscle fiber surface of denervated 15-day-old SMp muscle. Taken together, these data show that denervated muscles escape physiological regulation, producing increased levels of AChE with highly variable cellular distribution and patterns of molecular forms, depending on the age of operation and on the type of muscle.

摘要

为了研究运动神经支配和活动对肌肉特性的作用,我们研究了家兔快肌(副半膜肌;SMa)和慢肌(半膜肌本体;SMp)中乙酰胆碱酯酶(AChE)的分子形式。我们已经表明,SMa和SMp表达不同模式和组织分布的AChE形式,并且长期去神经支配的影响随年龄而变化。这些研究得出了关于AChE分子形式表达的三个主要发现。(1)在成年去神经支配的SMa和SMp肌肉中,AChE的活性及其分子形式的模式发生了特别改变。两种肌肉中的AChE活性均增加了10倍,但不对称形式在SMa中消失,而在SMp肌肉中增加了20倍。在这些肌肉切断肌腱后也发现了类似的AChE改变,表明去神经支配的影响可能部分归因于肌肉活动的抑制。(2)成年去神经支配的SMa和SMp肌肉中AChE分子形式组成的不同变化与用抗AChE单克隆抗体以及与结合AChE不对称、胶原尾形式的DBA或VVA凝集素进行的荧光染色一致。这些凝集素对去神经支配的SMa肌肉表面染色较差,但对去神经支配的SMp肌肉中的神经肌肉接头和突触外区域染色强烈。(3)与成年动物相反,1日龄肌肉的去神经支配并未明显改变AChE的总量或其分子形式的比例,尽管对肌肉结构有显著影响。用荧光DBA标记的研究支持了这些结果:该凝集素仅轻微染色去神经支配的15日龄SMp肌肉的肌纤维表面。综上所述,这些数据表明去神经支配的肌肉逃避了生理调节,根据手术年龄和肌肉类型,产生了AChE水平升高,其细胞分布和分子形式模式高度可变。

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