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大鼠半横膈的慢性去神经支配:肌纤维异质性的维持及肌球蛋白亚型相关的均匀性增加

Chronic denervation of rat hemidiaphragm: maintenance of fiber heterogeneity with associated increasing uniformity of myosin isoforms.

作者信息

Carraro U, Morale D, Mussini I, Lucke S, Cantini M, Betto R, Catani C, Dalla Libera L, Danieli Betto D, Noventa D

出版信息

J Cell Biol. 1985 Jan;100(1):161-74. doi: 10.1083/jcb.100.1.161.

Abstract

During several months of denervation, rat mixed muscles lose slow myosin, though with variability among animals. Immunocytochemical studies showed that all the denervated fibers of the hemidiaphragm reacted with anti-fast myosin, while many reacted with anti-slow myosin as well. This has left open the question as to whether multiple forms of myosin co-exist within individual fibers or a unique, possibly embryonic, myosin is present, which shares epitopes with fast and slow myosins. Furthermore, one can ask if the reappearance of embryonic myosin in chronically denervated muscle is related both to its re-expression in the pre-existing fibers and to cell regeneration. To answer these questions we studied the myosin heavy chains from individual fibers of the denervated hemidiaphragm by SDS PAGE and morphologically searched for regenerative events in the long term denervated muscle. 3 mo after denervation the severely atrophic fibers of the hemidiaphragm showed either fast or a mixture of fast and slow myosin heavy chains. Structural analysis of proteins sequentially extracted from muscle cryostat sections showed that slow myosin was still present 16 mo after denervation, in spite of the loss of the selective distribution of fast and slow features. Therefore muscle fibers can express adult fast myosin not only when denervated during their differentiation but also after the slow program has been expressed for a long time. Light and electron microscopy showed that the long-term denervated muscle maintained a steady-state atrophy for the rat's life span. Some of the morphological features indicate that aneural regeneration events continuously occur and significantly contribute to the increasing uniformity of the myosin gene expression in long-term denervated diaphragm.

摘要

在去神经支配的几个月里,大鼠混合肌会丢失慢肌球蛋白,不过不同动物之间存在差异。免疫细胞化学研究表明,半横膈膜所有去神经支配的纤维都与抗快肌球蛋白发生反应,而许多纤维也与抗慢肌球蛋白发生反应。这就留下了一个问题:是多种形式的肌球蛋白共存于单个纤维中,还是存在一种独特的、可能是胚胎型的肌球蛋白,它与快肌球蛋白和慢肌球蛋白共享表位。此外,人们可以问,慢性去神经支配肌肉中胚胎型肌球蛋白的重新出现是否既与其在原有纤维中的重新表达有关,又与细胞再生有关。为了回答这些问题,我们通过SDS-PAGE研究了去神经支配的半横膈膜单个纤维中的肌球蛋白重链,并从形态学上寻找长期去神经支配肌肉中的再生事件。去神经支配3个月后,半横膈膜严重萎缩的纤维显示出快肌球蛋白重链或快肌球蛋白重链与慢肌球蛋白重链的混合。对从肌肉低温切片中依次提取的蛋白质进行结构分析表明,去神经支配16个月后慢肌球蛋白仍然存在,尽管快肌和慢肌特征的选择性分布已经消失。因此,肌肉纤维不仅在分化过程中去神经支配时能表达成年快肌球蛋白,而且在慢程序已经表达很长时间后也能表达。光镜和电镜显示,长期去神经支配的肌肉在大鼠的寿命期间保持稳定状态的萎缩。一些形态学特征表明,无神经再生事件持续发生,并显著促进了长期去神经支配的横膈膜中肌球蛋白基因表达的一致性增加。

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