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首页> 外文期刊>The Journal of general physiology >Subconductance block of single mechanosensitive ion channels in skeletal muscle fibers by aminoglycoside antibiotics.
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Subconductance block of single mechanosensitive ion channels in skeletal muscle fibers by aminoglycoside antibiotics.

机译:氨基糖苷类抗生素对骨骼肌纤维中单个机械敏感离子通道的亚传导阻滞。

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摘要

The activity of single mechanosensitive channels was recorded from cell-attached patches on acutely isolated skeletal muscle fibers from the mouse. The experiments were designed to investigate the mechanism of channel block produced by externally applied aminoglycoside antibiotics. Neomycin and other aminoglycosides reduced the amplitude of the single-channel current at negative membrane potentials. The block was concentration-dependent, with a half-maximal concentration of approximately 200 microM. At high drug concentrations, however, block was incomplete with roughly one third of the current remaining unblocked. Neomycin also caused the channel to fluctuate between the open state and a subconductance level that was also roughly one third the amplitude of the fully open level. An analysis of the kinetics of the subconductance fluctuations was consistent with a bimolecular reaction between an aminoglycoside molecule and the open channel (kon = approximately 1 x 10(6) M-1s-1 and koff = approximately 400 s-1 at -60 mV). Increasing the external pH reduced both the rapid block of the open channel and the frequency of the subconductance fluctuations, as if both blocking actions were produced by a single active drug species with a pKa = approximately 7.5. The results are interpreted in terms of a mechanism in which an aminoglycoside molecule partially occludes ion flow through the channel pore.
机译:从来自小鼠的急性分离的骨骼肌纤维上的细胞贴片记录了单个机械敏感通道的活性。设计实验是为了研究外用氨基糖苷类抗生素产生的通道阻滞机理。新霉素和其他氨基糖苷类在负膜电位下降低了单通道电流的幅度。该阻滞剂是浓度依赖性的,最大浓度的一半为约200 microM。但是,在高药物浓度下,阻滞是不完全的,目前约有三分之一仍未阻滞。新霉素还导致通道在打开状态和亚导电水平之间波动,该亚导电水平也大约是完全打开水平振幅的三分之一。次导电性波动的动力学分析与氨基糖苷分子和明渠之间的双分子反应一致(kon =大约1 x 10(6)M-1s-1,koff = -60 mV时大约400 s-1) )。增大外部pH值会同时减少开放通道的快速阻塞和子传导波动的频率,就好像这两种阻塞作用都是由pKa =约7.5的单一活性药物产生的。根据氨基糖苷分子部分阻塞离子流过通道孔的机理来解释结果。

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