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首页> 外文期刊>Neuromuscular disorders: NMD >Skeletal muscle of mice with a mutation in slow alpha-tropomyosin is weaker at lower lengths.
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Skeletal muscle of mice with a mutation in slow alpha-tropomyosin is weaker at lower lengths.

机译:慢速α-原肌球蛋白突变的小鼠的骨骼肌在较短的长度时较弱。

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摘要

Skeletal muscle function was measured in anaesthetised transgenic mice having a mutation in the TPM3 gene (slow alpha-tropomyosin), a similar mutation as found in some patients with nemaline myopathy, and was compared with control muscles. Measurements of isometric and dynamic muscle performance were done with electrical nerve stimulation at physiological temperatures. No muscle weakness was found in the transgenic muscles when performance was measured at muscle optimum length. This was true not only with full activation but also at lower activation levels, indicating that calcium sensitivity was not affected at this length. Also, fatigability was not affected in these conditions. However, isometric force of the muscles with the mutation in TPM3 was lower at lengths below optimum, with more impairment at decreasing length. As the muscles are active over a large range of different muscle lengths during daily activities, this finding may explain, at least in part, the muscle weakness experienced by patients with nemaline myopathy.
机译:在麻醉的转基因小鼠中测量了骨骼肌功能,该小鼠的TPM3基因有突变(慢速α-原肌球蛋白),与某些肾上腺肌病患者发现的突变相似,并与对照肌肉进行了比较。等距和动态肌肉性能的测量是在生理温度下用电神经刺激进行的。在最佳肌肉长度下测量性能时,在转基因肌肉中未发现肌肉无力。不仅在完全激活时如此,在较低的激活水平时也是如此,这表明在此长度下钙敏感性不受影响。而且,在这些条件下,易疲劳性不受影响。但是,TPM3中突变的肌肉的等轴测力在低于最佳长度的长度处较低,而在减小长度的长度处具有更大的损伤。由于肌肉在日常活动中会在很大范围的不同肌肉长度上活跃,因此这一发现至少可以部分解释肾上腺肌病患者所经历的肌肉无力。

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