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在缺乏肌肉活动的情况下,肌球蛋白重链表达减慢。

Slow myosin heavy chain expression in the absence of muscle activity.

作者信息

Agbulut O, Vignaud A, Hourde C, Mouisel E, Fougerousse F, Butler-Browne G S, Ferry A

机构信息

EA300, Université Paria Diderot, Paris, France.

出版信息

Am J Physiol Cell Physiol. 2009 Jan;296(1):C205-14. doi: 10.1152/ajpcell.00408.2008. Epub 2008 Oct 22.

DOI:10.1152/ajpcell.00408.2008
PMID:18945940
Abstract

Innervation has been generally accepted to be a major factor involved in both triggering and maintaining the expression of slow myosin heavy chain (MHC-1) in skeletal muscle. However, previous findings from our laboratory have suggested that, in the mouse, this is not always the case (30). Based on these results, we hypothesized that neurotomy would not markedly reduced the expression of MHC-1 protein in the mouse soleus muscles. In addition, other cellular, biochemical, and functional parameters were also studied in these denervated soleus muscles to complete our study. Our results show that denervation reduced neither the relative amount of MHC-1 protein, nor the percentage of muscle fibers expressing MHC-1 protein (P > 0.05). The fact that MHC-1 protein did not respond to muscle inactivity was confirmed in three different mouse strains (129/SV, C57BL/6, and CD1). In contrast, all of the other histological, biochemical, and functional muscle parameters were markedly altered by denervation. Cross-sectional area (CSA) of muscle fibers, maximal tetanic isometric force, maximal velocity of shortening, maximal power, and citrate synthase activity were all reduced in denervated muscles compared with innervated muscles (P < 0.05). Contraction and one-half relaxation times of the twitch were also increased by denervation (P < 0.05). Addition of tenotomy to denervation had no further effect on the relative expression of MHC-1 protein (P > 0.05), despite a greater reduction in CSA and citrate synthase activity (P < 0.05). In conclusion, a deficit in neural input leads to marked atrophy and reduction in performance in mouse soleus muscles. However, the maintenance of the relative expression of slow MHC protein is independent of neuromuscular activity in mice.

摘要

神经支配通常被认为是触发和维持骨骼肌慢肌球蛋白重链(MHC-1)表达的主要因素。然而,我们实验室之前的研究结果表明,在小鼠中情况并非总是如此(30)。基于这些结果,我们推测切断神经不会显著降低小鼠比目鱼肌中MHC-1蛋白的表达。此外,还对这些去神经支配的比目鱼肌中的其他细胞、生化和功能参数进行了研究,以完成我们的研究。我们的结果表明,去神经支配既没有降低MHC-1蛋白的相对含量,也没有降低表达MHC-1蛋白的肌纤维百分比(P>0.05)。在三种不同的小鼠品系(129/SV、C57BL/6和CD1)中证实了MHC-1蛋白对肌肉失活无反应这一事实。相比之下,所有其他组织学、生化和功能性肌肉参数均因去神经支配而发生显著改变。与有神经支配的肌肉相比,去神经支配的肌肉中肌纤维的横截面积(CSA)、最大强直等长力、最大缩短速度、最大功率和柠檬酸合酶活性均降低(P<0.05)。去神经支配还增加了单收缩的收缩时间和半松弛时间(P<0.05)。尽管CSA和柠檬酸合酶活性进一步降低(P<0.05),但去神经支配联合切断肌腱对MHC-1蛋白的相对表达没有进一步影响(P>0.05)。总之,神经输入不足会导致小鼠比目鱼肌明显萎缩和性能下降。然而,慢肌MHC蛋白相对表达的维持与小鼠的神经肌肉活动无关。

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