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A Ca2+-inhibited non-selective cation conductance contributes to pacemaker currents in mouse interstitial cell of Cajal

机译:Ca2 +抑制的非选择性阳离子电导有助于Cajal小鼠间质细胞中的起搏器电流

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摘要

Interstitial cells of Cajal (ICC) provide pacemaker activity in some smooth muscles. The nature of the pacemaker conductance is unclear, but studies suggest that pacemaker activity is due to a voltage-independent, Ca2+-regulated, non-selective cation conductance. We investigated Ca2+-regulated conductances in murine intestinal ICC and found that reducing cytoplasmic Ca2+ activates whole-cell inward currents and single-channel currents. Both the whole-cell currents and single-channel currents reversed at 0 mV when the equilibrium potentials of all ions present were far from 0 mV. Recordings from on-cell patches revealed oscillations in unitary currents at the frequency of pacemaker currents in ICC. Voltage-clamping cells to −60 mV did not change the oscillatory activity of channels in on-cell patches. Depolarizing cells with high external K+ caused loss of resolvable single-channel currents, but the oscillatory single-channel currents were restored when the patches were stepped to negative potentials. Unitary currents were also resolved in excised patches. The single-channel conductance was 13 pS, and currents reversed at 0 mV. The channels responsible were strongly activated by 10−7m Ca2+, and 10−6 m Ca2+ reduced activity. The 13 pS channels were strongly activated by the calmodulin inhibitors calmidazolium and W-7 in on-cell and excised patches. Calmidazolium and W-7 also activated a persistent inward current under whole-cell conditions. Murine ICC express Ca2+-inhibited, non-selective cation channels that are periodically activated at the same frequency as pacemaker currents. This conductance may contribute to the pacemaker current and generation of electrical slow waves in GI muscles.
机译:Cajal间质细胞(ICC)在某些平滑肌中提供起搏器活动。起搏器电导的性质尚不清楚,但研究表明,起搏器的活动是由于电压独立的,Ca 2 + 调节的非选择性阳离子电导引起的。我们研究了Ca 2 + 调节的小鼠肠道ICC中的电导,发现降低细胞质Ca 2 + 可激活全细胞内向电流和单通道电流。当存在的所有离子的平衡电位都远离0 mV时,全电池电流和单通道电流都在0 mV时反转。来自细胞贴片的记录显示,在ICC中,以起搏器电流的频率发生的单位电流振荡。钳位电压至-60 mV的电压不会改变电池片上通道的振荡活动。具有高外部K + 的去极化细胞导致可分辨的单通道电流损失,但当贴片步进至负电位时,振荡的单通道电流得以恢复。单一电流也被解决在切除的补丁。单通道电导为13 pS,电流在0 mV时反向。负责的通道被10 −7 m Ca 2 + 和10 −6 m Ca 2 + 强烈激活>减少活动。钙调蛋白抑制剂Calidazoazolium和W-7在细胞上和切下的贴片中强烈激活了13 pS通道。钙cell和W-7在全细胞条件下也激活持续的内向电流。鼠ICC表达Ca 2 + 抑制的非选择性阳离子通道,该通道以与起搏器电流相同的频率周期性地被激活。这种电导可能有助于起搏器电流以及胃肠道肌肉中电慢波的产生。

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