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Gating behaviour of sodium currents in adult mouse muscle recorded with an improved two-electrode voltage clamp

机译:用改进的两电极电压钳记录成年小鼠肌肉钠电流的门控行为

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摘要

The availability of knock-in mutant mouse models for channelopathies of skeletal muscle has generated the need for improved methods to record ionic currents under voltage clamp in fully differentiated adult muscle fibres. A two-electrode voltage clamp has been optimized for recording Na+ currents in small fibres dissociated from the footpad. Clamp speed and spatial homogeneity were achieved by using short fibres (<600 μm) that were detubulated with hyperosmolar glycerol. Series resistance errors were reduced by limiting current amplitude with low [Na+]. The quality of the voltage clamp was explored with computer simulations of a finite cable model with active conductances. Simulations quantitatively defined the range of conditions for which clamp control can be maintained, and provided estimates for the errors in the determination of gating parameters from standard pulse protocols. Sodium currents recorded from short fast-twitch muscles revealed a hyperpolarized shift in the voltage dependence of activation (V1/2−52 mV) and fast inactivation (V1/2−88 mV) compared to expression studies of NaV1.4 in mammalian cell lines. Slow inactivation occurred at depolarized potentials (V1/2−69 mV) relative to fast inactivation. These data reveal a marked divergence in the voltage dependence of fast and slow inactivation and provide normative values of Na+ channel behaviour for mouse skeletal muscle that will serve as a reference for the investigation of muscle ion channelopathies using genetically engineered mice or computer simulation.
机译:骨骼肌通道病变的敲入突变小鼠模型的可用性产生了对改进的方法的需求,该方法需要在电压钳制下在完全分化的成年肌肉纤维中记录离子电流。已对两电极电压钳进行了优化,以记录从脚垫解离的小纤维中的Na + 电流。夹紧速度和空间均匀性是通过使用短纤维(<600μm)和高渗甘油去管而实现的。通过限制低[Na + ]的电流幅度,可以减小串联电阻误差。通过计算机模拟具有活动电导的有限电缆模型来探索电压钳的质量。仿真定量地定义了可以保持钳位控制的条件范围,并提供了根据标准脉冲协议确定选通参数时的误差估计。与NaV1.4在哺乳动物细胞系中的表达研究相比,从短促短促肌肉记录的钠电流揭示了激活电压依赖性(V1 / 2-52 mV)和快速灭活电压(V1 / 2-88 mV)的超极化转变。 。相对于快速失活,缓慢的失活发生在去极化电势(V1 / 2-69 mV)处。这些数据揭示了快速和慢速灭活的电压依赖性存在显着差异,并提供了小鼠骨骼肌Na + 通道行为的规范值,将为通过遗传方法研究肌肉离子通道病提供参考工程鼠标或计算机仿真。

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