Asmussen Gerhard, Schmalbruch Ina, Soukup Tomás, Pette Dirk
Carl-Ludwig-Institute of Physiology, University Leipzig, Liebigstrasse 27, D-04103 Leipzig, Germany.
Exp Neurol. 2003 Dec;184(2):758-66. doi: 10.1016/S0014-4886(03)00294-2.
This study focuses on the effects of neuromuscular hyperactivity on the contractile properties, fiber type composition, and myosin heavy chain (MHC) isoform expression of fast-twitch extensor digitorum longus (EDL) and slow-twitch soleus (SOL) muscles in Japanese waltzing mice (JWM) of the C57BL/6J-v2J strain. The same properties were studied in the homologous muscle of control CBA/J mice (CM). In comparison to CM, the JWM exhibited (i) longer activity periods, prolonged bouts of running and a higher food intake, (ii) slower twitch and tetanic contractions of both EDL and SOL muscles, decreased cold and post-tetanic potentiation of the EDL, as well as increased cold and post-tetanic depressions of the SOL. Electrophoretic analyses of MHC isoform revealed a shift toward slower isoforms in both EDL and SOL muscles of JWM as compared to the homologous muscles of CM, namely, a shift from the fastest MHCIIb to the MHCIId/x isoform in the EDL muscle and a shift from MHCIIa to MHCI in the SOL muscle. The latter also contained a higher percentage of type I fibers and displayed a higher capillary density than the SOL muscle of CM. These findings show that the inherently enhanced motor activity of the JWM leads to fiber type transitions in the direction of slower phenotypes. JWM thus represent a suitable model for studying fast-to-slow fiber transitions under the influence of spontaneous motor hyperactivity.
本研究聚焦于C57BL/6J-v2J品系日本华尔兹小鼠(JWM)中神经肌肉活动亢进对快肌趾长伸肌(EDL)和慢肌比目鱼肌(SOL)的收缩特性、纤维类型组成及肌球蛋白重链(MHC)亚型表达的影响。同时对对照CBA/J小鼠(CM)的同源肌肉进行了相同特性的研究。与CM相比,JWM表现出:(i)活动期更长、跑步时间延长且食物摄入量更高;(ii)EDL和SOL肌肉的抽搐和强直收缩均较慢,EDL的冷刺激和强直后增强减弱,而SOL的冷刺激和强直后抑制增强。MHC亚型的电泳分析显示,与CM的同源肌肉相比,JWM的EDL和SOL肌肉中均出现向较慢亚型的转变,即EDL肌肉中从最快的MHCIIb转变为MHCIId/x亚型,SOL肌肉中从MHCIIa转变为MHCI。后者还含有更高比例的I型纤维,且毛细血管密度高于CM的SOL肌肉。这些发现表明,JWM固有的运动活性增强导致纤维类型向较慢表型方向转变。因此,JWM是研究自发运动亢进影响下快肌纤维向慢肌纤维转变的合适模型。