...
首页> 外文期刊>The Journal of Physiology >Partial opening and subconductance gating of mechanosensitive ion channels in dystrophic skeletal muscle
【24h】

Partial opening and subconductance gating of mechanosensitive ion channels in dystrophic skeletal muscle

机译:营养不良性骨骼肌机械敏感离子通道的部分开放和亚电导通

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

We recorded the activity of single mechanosensitive (MS) ion channels in skeletal muscle from the mdx mouse, a deletion mutant that lacks the cytoskeletal protein, dystrophin. Experiments were designed to examine the influence of dystrophin, a major component of skeletal muscle costameres, on the behaviour of single MS channels. In the majority of recordings from cell-attached patches, MS channels have a conductance of ~23 pS. Recordings from some patches, however, showed a smaller conductance channel of ~7-14 pS. Large and small conductance channels were detected in a single patch and showed serial, non-random gating, suggesting different opening levels of a single channel. Analysis of the distribution of current amplitudes within the open channel showed MS channels fluctuate between subconductance levels. MS channels in dystrophic muscle spend ~60% of the time at smaller subconductance levels, often failing to reach the fully open level. Applying pressure to the membrane of mdx fibres increases in a graded manner occupancy of the fully open state, while reducing occupancy of subconductance levels. Recordings also show partial openings of MS channels in both wild-type and mdx muscle that fail to reach the fully open state. Partial openings occur at a higher frequency in mdx muscle and reflect occupancy of subconductance levels seen during complete activations. In muscle from mdx/utrn-/- double knockout mice, MS channels also spend more time at subconductance levels than the fully open state. Conductance variability of MS channels may represent gating of a heteromeric protein composed of different channel subunits. The results also show that partial opening and prolonged burst duration are distinct mechanisms that contribute to excess Ca2+ entry in dystrophic muscle.
机译:我们记录了来自mdx小鼠骨骼肌中单个机械敏感(MS)离子通道的活动,mdx小鼠是缺少细胞骨架蛋白,肌营养不良蛋白的缺失突变体。实验旨在检查肌营养不良蛋白(骨骼肌肋骨的主要成分)对单个MS通道行为的影响。在大多数贴有细胞贴片的录音中,MS通道的电导约为23 pS。然而,一些补丁的记录显示,电导通道较小,约为7-14 pS。在单个贴片中检测到大和小电导通道,并显示出连续的非随机门控,表明单个通道的打开程度不同。分析明渠内电流幅度的分布表明,MS渠在亚电导水平之间波动。营养不良性肌肉中的MS通道在较小的亚传导水平上花费约60%的时间,通常无法达到完全开放的水平。向mdx纤维的膜施加压力以逐步打开的方式增加了对完全打开状态的占用,同时减少了子传导水平的占用。记录还显示了野生型和mdx肌肉中MS通道的部分打开,但未达到完全打开状态。部分开口以较高的频率出现在mdx肌肉中,反映了完全激活过程中看到的亚传导水平的占用。在mdx / utrn-/-双敲除小鼠的肌肉中,与完全打开状态相比,MS通道在亚传导水平上花费的时间也更多。 MS通道的电导变异性可能代表由不同通道亚基组成的异聚蛋白的门控。结果还表明,部分开放和延长的爆发持续时间是导致营养不良性肌中过量Ca2 +进入的独特机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号