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钠通道在短期和长期去神经支配的啮齿动物骨骼肌中的表达与分布

Expression and distribution of sodium channels in short- and long-term denervated rodent skeletal muscles.

作者信息

Lupa M T, Krzemien D M, Schaller K L, Caldwell J H

机构信息

University of Colorado Health Sciences Center, Department of Cellular and Structural Biology, Denver 80262, USA.

出版信息

J Physiol. 1995 Feb 15;483 ( Pt 1)(Pt 1):109-18. doi: 10.1113/jphysiol.1995.sp020571.

Abstract
  1. Loose-patch voltage-clamp recordings were made from rat and mouse skeletal muscle fibres denervated for up to 6 weeks. Innervated muscles possessed a Na+ current density of 107 +/- 3.3 mA cm-2 in endplate membrane, and 6.3 +/- 0.6 mA cm-2 in extrajunctional membrane. This high concentration of Na+ channels at the endplate was gradually reduced following denervation. After 6 weeks of denervation, the endplate Na+ channel concentration was reduced by 40-50%, and the density of Na+ channels in extrajunctional membrane was increased by about 30%. 2. The tetrodotoxin (TTX)-resistant form of the Na+ channel appeared after 3 days of denervation and comprised approximately 43% of the endplate Na+ channels 5-6 days after denervation. Subsequently, TTX-resistant Na+ channels were reduced in density to approximately 25% of the postjunctional Na+ channels and remained at this level up to 6 weeks after denervation. 3. RNase protection analysis showed that mRNA encoding the TTX-resistant Na+ channel was virtually absent in innervated muscle, rose > 50-fold after 3 days of denervation, then decreased by 95% 6 weeks after denervation. The density of TTX-resistant Na+ channels correlated qualitatively with changes in mRNA levels. 4. These results suggest that the density of Na+ channels at neuromuscular junctions is maintained by two mechanisms, one influenced by the nerve terminal and the other independent of innervation.
摘要
  1. 对去神经支配长达6周的大鼠和小鼠骨骼肌纤维进行了松散膜片钳记录。有神经支配的肌肉终板膜中Na⁺电流密度为107±3.3 mA/cm²,结外膜中为6.3±0.6 mA/cm²。去神经支配后,终板处这种高浓度的Na⁺通道逐渐减少。去神经支配6周后,终板Na⁺通道浓度降低了40 - 50%,结外膜中Na⁺通道密度增加了约30%。2. 去神经支配3天后出现了对河豚毒素(TTX)耐受的Na⁺通道形式,去神经支配5 - 6天后,其约占终板Na⁺通道的43%。随后,对TTX耐受的Na⁺通道密度降至结后Na⁺通道的约25%,并在去神经支配后6周内维持在这一水平。3. RNase保护分析表明,编码对TTX耐受的Na⁺通道的mRNA在有神经支配的肌肉中几乎不存在,去神经支配3天后升高了50倍以上,然后在去神经支配6周后下降了95%。对TTX耐受的Na⁺通道密度与mRNA水平的变化在质量上相关。4. 这些结果表明,神经肌肉接头处Na⁺通道的密度由两种机制维持,一种受神经末梢影响,另一种与神经支配无关。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3eb2/1157875/95646df91bc3/jphysiol00325-0110-a.jpg

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