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蛇骨骼肌终板和细胞核附近的钠通道。

Sodium channels near end-plates and nuclei of snake skeletal muscle.

作者信息

Roberts W M

机构信息

Department of Physiology and Biophysics, University of Washington, Seattle 98195.

出版信息

J Physiol. 1987 Jul;388:213-32. doi: 10.1113/jphysiol.1987.sp016611.

Abstract
  1. The spatial distribution of the two predominant types of voltage-gated channels in the sarcolemma, Na+ channels and delayed K+ channels, was studied in skeletal muscle fibres of garter snakes (Thamnophis sirtalis) using loose-seal patch recordings. 2. The average Na+-current density was five times larger in the perijunctional sarcolemma (within 25 microns of the visible edge of the end-plate) than at distant locations. K+ currents were not larger near end-plates. The apparent membrane capacitance, 3-6 microF/cm2, was the same in perijunctional and extrajunctional regions, indicating that differences in Na+-current density reflect differences in the number of Na+ channels per unit membrane area. 3. Perijunctional Na+ channels had the same voltage dependence, gating kinetics and sensitivity to tetrodotoxin as extrajunctional Na+ channels, suggesting that these cells express a single type of Na+ channel. 4. Myonuclei were found to cluster near end-plates and to avoid regions where a nerve branch or blood vessel crossed a fibre's surface. 5. Na+-current density in the sarcolemma above a nucleus was no larger than away from nuclei, indicating that functional Na+ channels are probably not inserted near nuclei. 6. Maps spanning several millimetres of fibre length showed up to sixfold differences in current density between widely separated patches. Differences between patches separated by 50 or 100 microns were much smaller.
摘要
  1. 利用松散封接膜片钳记录技术,研究了束带蛇(美洲束带蛇)骨骼肌纤维肌膜中两种主要类型的电压门控通道,即钠通道和延迟钾通道的空间分布。2. 终板周围肌膜(终板可见边缘25微米范围内)的平均钠电流密度比远处位置大五倍。终板附近的钾电流并不更大。终板周围和终板外区域的表观膜电容相同,为3 - 6微法/平方厘米,这表明钠电流密度的差异反映了单位膜面积上钠通道数量的差异。3. 终板周围的钠通道与终板外的钠通道具有相同的电压依赖性、门控动力学和对河豚毒素的敏感性,这表明这些细胞表达单一类型的钠通道。4. 发现肌细胞核聚集在终板附近,并避开神经分支或血管穿过纤维表面的区域。5. 细胞核上方肌膜中的钠电流密度并不比远离细胞核处更大,这表明功能性钠通道可能不会插入细胞核附近。6. 跨越几毫米纤维长度的图谱显示,相距较远的膜片之间的电流密度差异高达六倍。相隔50或100微米的膜片之间的差异则小得多。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96ea/1192545/4bdf71850b6e/jphysiol00529-0222-a.jpg

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