首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Voltage-gated sodium channel (SkM1) content in dystrophin-deficient muscle.
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Voltage-gated sodium channel (SkM1) content in dystrophin-deficient muscle.

机译:肌营养不良蛋白缺陷型肌肉中的电压门控钠通道(SkM1)含量。

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摘要

The membrane cytoskeleton is increasingly considered as both an anchor and a functional modulator for ion channels. The cytoskeletal disruptions that occur in the absence of dystrophin led us to investigate the voltage-gated sodium channel (SkM1) content in the extensor digitorum longus (EDL) muscle of the dystrophin-deficient mdx mouse. Levels of SkM1 mRNA were determined by semiquantitative reverse transcriptase polymerase chain reaction (RT-PCR). A C-terminal portion of the mouse-specific SkM1 alpha-subunit cDNA (mScn4a) was identified first. SkM1 mRNA levels were as abundant in mdx as in normal muscle, thus suggesting that the transcriptional rate of SkM1 remains unchanged in mdx muscle. However, SkMI density in the extrajunctional sarcolemma was shown to be significantly reduced in mdx muscle, using confocal immunofluorescence image analysis. This decrease was found to be associated with a reduction in the number of SkM1-rich fast-twitch IIb fibres in mdx muscle. In addition, lowered SkM1 sarcolemmal labelling was found in all mdx fibres regardless of their metabolic type. These results suggest the existence of a perturbation of SkM1 anchorage to the plasma membrane. Such an alteration is likely to be related to the 50% decrease in mdx muscle of the dystrophin-associated syntrophins, which are presumed to be involved in SkM1 anchorage. However, the moderate reduction in SkM1 density (-12.7%) observed in mdx muscle argues in favour of a non-exclusive role of syntrophins in SkM1 anchorage and suggests that other membrane-associated proteins are probably also involved.
机译:膜细胞骨架被越来越多地视为离子通道的锚和功能调节剂。在缺乏肌营养不良蛋白的情况下发生的细胞骨架破坏使我们研究了肌营养不良蛋白缺陷型mdx小鼠指趾伸肌(EDL)肌肉中的电压门控钠通道(SkM1)含量。通过半定量逆转录酶聚合酶链反应(RT-PCR)确定SkM1 mRNA的水平。首先确定了小鼠特异性SkM1α-亚基cDNA(mScn4a)的C端部分。 SkM1 mRNA水平在mdx中与正常肌肉中一样丰富,因此表明SkM1的转录率在mdx肌肉中保持不变。然而,使用共聚焦免疫荧光图像分析显示,mdx肌肉的结外肉瘤中的SkMI密度显着降低。发现这种减少与mdx肌肉中富含SkM1的快速抽搐IIb纤维数量减少有关。此外,无论其代谢类型如何,在所有mdx纤维中均发现SkM1肌膜标记降低。这些结果表明存在SkM1锚定到质膜的扰动。这种变化可能与肌营养不良蛋白相关的肌营养蛋白的mdx肌肉减少50%有关,肌营养不良蛋白相关的肌营养蛋白被认为与SkM1锚定有关。但是,在mdx肌肉中观察到的SkM1密度的适度降低(-12.7%)表示,在SynMhins在SkM1锚定中起非排他性作用,并暗示其他膜相关蛋白也可能参与其中。

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