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萎缩骨骼肌中肌球蛋白轻链磷酸化及抽搐增强的缺失。

Absence of myosin light chain phosphorylation and twitch potentiation in atrophied skeletal muscle.

作者信息

Tubman L A, Rassier D E, MacIntosh B R

机构信息

Faculty of Kinesiology, University of Calgary, Canada.

出版信息

Can J Physiol Pharmacol. 1996 Jun;74(6):723-8.

PMID:8909785
Abstract

Staircase potentiation does not occur in atrophied rat gastrocnemius muscle subjected to repetitive stimulation. Since twitch potentiation is strongly correlated with phosphorylation of the regulatory light chains (R-LC) of myosin, our purpose was to determine if R-LC phosphorylation with repetitive stimulation is also diminished in atrophied gastrocnemius muscle. Following 2 weeks of disuse, induced by delivery of tetrodotoxin (TTX) to the sciatic nerve, phosphorylation and twitch developed tension were measured at 10 s of 10-Hz stimulation in situ in control, sham, and TTX-treated rats. Phosphorylation was significantly diminished in TTX-treated animals (9.3 +/- 3.7%), compared with control (57.0 +/- 3.4%) and sham-treated (45.5 +/- 5.6%) animals. Concomitantly, at 10 s of 10-Hz stimulation, potentiation was absent in atrophied muscles (74.4 +/- 9.4% of initial twitch), whereas control (188.4 +/- 10.3%) and sham-treated (151.7 +/- 10.3%) muscles demonstrated a great deal of potentiation. The twitch contraction of the atrophied muscles had a decreased rate of tension development and peak rate of relaxation, and an increased contraction time and half-relaxation time. The observation that the light chains are present, but not phosphorylated, suggests that the process of phosphorylation is impaired. The association of diminished phosphorylation with the absence of staircase supports the theory that R-LC phosphorylation may be the principal mechanism for twitch potentiation but does not rule out other contributing factors.

摘要

在遭受重复刺激的萎缩大鼠腓肠肌中不会出现阶梯式增强。由于单收缩增强与肌球蛋白调节轻链(R-LC)的磷酸化密切相关,我们的目的是确定在萎缩的腓肠肌中,重复刺激时R-LC磷酸化是否也会减少。通过向坐骨神经注射河豚毒素(TTX)诱导废用2周后,在对照、假手术和TTX处理的大鼠原位,于10 Hz刺激10 s时测量磷酸化和单收缩发展张力。与对照动物(57.0±3.4%)和假手术动物(45.5±5.6%)相比,TTX处理的动物磷酸化显著减少(9.3±3.7%)。同时,在10 Hz刺激10 s时,萎缩肌肉中不存在增强(为初始单收缩的74.4±9.4%),而对照肌肉(188.4±10.3%)和假手术处理的肌肉(151.7±10.3%)表现出大量增强。萎缩肌肉的单收缩张力发展速率和峰值松弛速率降低,收缩时间和半松弛时间增加。轻链存在但未磷酸化这一观察结果表明磷酸化过程受损。磷酸化减少与阶梯式增强缺失之间的关联支持了R-LC磷酸化可能是单收缩增强的主要机制这一理论,但并不排除其他促成因素。

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