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新生期运动神经去支配对大鼠肌梭中肌球蛋白重链亚型表达的影响。

Influence of neonatal motor denervation on expression of myosin heavy chain isoforms in rat muscle spindles.

作者信息

Soukup T, Pedrosa F, Thornell L E

机构信息

Institute of Physiology, Czechoslovak Academy of Sciences, Prague.

出版信息

Histochemistry. 1990;94(3):245-56. doi: 10.1007/BF00266624.

Abstract

In order to evaluate the effects of fusimotor elimination on the expression of myosin heavy chain (MHC) proteins in intrafusal fibres, we compared the muscle spindles in hind limb muscles of 3- to 6-week-old rats de-efferented at birth with those of their litter-mate controls. Serial sections were labelled with antibodies against slow tonic, slow twitch, fast twitch and neonatal MHC isoforms, against synaptophysin, the neurofilament 68 kD subunit and laminin. We found that de-efferented intrafusal fibres differentiated, as in normal spindles, into nuclear bag and bag fibres both containing predominantly slow MHC, and nuclear chain fibres that contained fast and neonatal MHC. In both de-efferented and control intrafusal fibres the same MHCs were stained; the degree and extent of staining, however, varied. Both types of de-efferented bag fibres displayed a high content of slow tonic and slow twitch MHC along most of the fibre length, in contrast to the prominent regional variation in control bag fibres. In their encapsulated regions, the de-efferented bag fibres were more similar to each other in their reactivity to anti-fast twitch and anti-neonatal MHC antibodies than the control bag fibres. In these aspects they resembled more closely the bag fibres of newborn rats. The differences might be due to an arrest of "specialization" in the regional expression of the different MHC isoforms. Chain fibres developed MHC patterns identical to those of control spindles with all the antibodies used, even though they differentiated from the beginning in the absence of motor innervation. The structural differentiation of the capsule and sensory innervation in de-efferented muscle spindles, as shown by anti-laminin, anti-synaptophysin and anti-neurofilament staining, did not differ from the controls. We conclude, in agreement with previous studies, that the sensory innervation plays a key role in inducing and supporting the differentiation of intrafusal fibres and the specific expression of their MHC. However, we also show that motor innervation and/or muscle function seem to be necessary for the diversity in the expression and distribution of different slow and fast MHC isoforms in the bag and bag fibres.

摘要

为了评估肌梭运动消除对梭内肌纤维中肌球蛋白重链(MHC)蛋白表达的影响,我们比较了出生时去传入神经的3至6周龄大鼠后肢肌肉中的肌梭与其同窝对照大鼠的肌梭。连续切片用抗慢张力、慢收缩、快收缩和新生MHC亚型、抗突触素、神经丝68 kD亚基和层粘连蛋白的抗体进行标记。我们发现,去传入神经的梭内肌纤维与正常肌梭一样,分化为主要含有慢MHC的核袋纤维和袋状纤维,以及含有快MHC和新生MHC的核链纤维。在去传入神经和对照的梭内肌纤维中,染色的MHC相同;然而,染色的程度和范围有所不同。与对照袋状纤维中明显的区域差异相反,两种类型的去传入神经袋状纤维在大部分纤维长度上都显示出高含量的慢张力和慢收缩MHC。在其被膜区域,去传入神经袋状纤维对抗快收缩和抗新生MHC抗体的反应性比对照袋状纤维彼此更相似。在这些方面,它们更类似于新生大鼠的袋状纤维。这些差异可能是由于不同MHC亚型区域表达的“特化”停滞所致。尽管链状纤维从一开始就在没有运动神经支配的情况下分化,但用所有使用的抗体检测,其MHC模式与对照肌梭相同。抗层粘连蛋白、抗突触素和抗神经丝染色显示,去传入神经肌梭中被膜和感觉神经支配的结构分化与对照无差异。与先前的研究一致,我们得出结论,感觉神经支配在诱导和支持梭内肌纤维的分化及其MHC的特异性表达中起关键作用。然而,我们还表明,运动神经支配和/或肌肉功能似乎是袋状纤维和袋状纤维中不同慢、快MHC亚型表达和分布多样性所必需的。

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