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在兔回肠纵行肌平滑肌细胞内储存的钙耗尽后,雷诺丁抑制钙依赖性钾电流。

Ryanodine inhibits the Ca-dependent K current after depletion of Ca stored in smooth muscle cells of the rabbit ileal longitudinal muscle.

作者信息

Sakai T, Terada K, Kitamura K, Kuriyama H

机构信息

Department of Orthodontics, Faculty of Dentistry, Kyushu University, Fukuoka, Japan.

出版信息

Br J Pharmacol. 1988 Dec;95(4):1089-100. doi: 10.1111/j.1476-5381.1988.tb11743.x.

Abstract
  1. Effects of ryanodine on the membrane currents were investigated on dispersed smooth muscle cells of rabbit ileal longitudinal layer using voltage and patch clamp procedures. 2. With voltage clamp, membrane depolarization to 0 mV from the holding potential of -60 mV produced an inward Ca current (ICa) which was followed by transient and sustained outward currents (ITO and ISO, respectively). Prolonged depolarization of the membrane produced spontaneous oscillations of the outward current (oscillatory outward current; IOO) on ISO. 3. Ryanodine (30 microM) modified neither the basal membrane current recorded at the holding potential (-60 mV) nor ISO. Ryanodine inhibited both ITO and IOO in a concentration-dependent manner (IC50 = 5.5 and 4.5 microM, respectively, measured 12 min after application of ryanodine). These values were much higher than that observed in skeletal muscle for Ca release. 4. The time course of the ryanodine-induced inhibition of IOO was slow and the inhibition was irreversible. Caffeine (3 mM) enhanced the amplitudes of ITO and IOO in the presence of Ca, and only transiently enhanced IOO in the absence of Ca. However, following application of 10 microM ryanodine, 3 mM caffeine did not increase IOO. 5. Ryanodine (3-30 microM) slightly enhanced the amplitude of ICa evoked by depolarization pulses at potentials more negative than O mV but not that induced by larger depolarizations (positive potentials). 6. With patch clamp procedure, single Ca-dependent K channel currents were recorded in cell free and cell attached configurations. Application of 30 microM ryanodine transiently enhanced the Ca-dependent K current without any detectable changes in the amplitude of the single channel current recorded in the cell attached condition. In the inside-out membrane patch, when the intracellular membrane side was superfused with 1 microM Ca buffered with 10 mM EGTA, bath application of 10 microM ryanodine had no effect on the Ca-dependent K current. 7. It was concluded that both ITO and IOO are generated by Ca released from intracellular stores, mainly sarcoplasmic reticulum. Ryanodine appears to open irreversibly the Ca channel in the store and to inhibit the Ca-dependent K channel due to depletion of the stored Ca.
摘要
  1. 采用电压钳和膜片钳技术,研究了ryanodine对兔回肠纵行肌层分散平滑肌细胞的膜电流的影响。2. 在电压钳实验中,将膜电位从-60 mV的钳制电位去极化至0 mV,可产生内向钙电流(ICa),随后依次出现瞬时外向电流和持续外向电流(分别为ITO和ISO)。膜的长时间去极化会在ISO上产生外向电流的自发振荡(振荡外向电流;IOO)。3. Ryanodine(30 μM)既不改变在钳制电位(-60 mV)记录的基础膜电流,也不改变ISO。Ryanodine以浓度依赖的方式抑制ITO和IOO(分别在应用ryanodine 12分钟后测量,IC50分别为5.5和4.5 μM)。这些值远高于在骨骼肌中观察到的钙释放的值。4. Ryanodine诱导的对IOO的抑制的时间进程缓慢且抑制是不可逆的。咖啡因(3 mM)在有钙存在时增强ITO和IOO的幅度,在无钙时仅短暂增强IOO。然而,在应用10 μM ryanodine后,3 mM咖啡因不会增加IOO。5. Ryanodine(3 - 30 μM)在膜电位比0 mV更负时,对去极化脉冲诱发的ICa幅度有轻微增强作用,但对更大去极化(正电位)诱发的ICa幅度无增强作用。6. 采用膜片钳技术,在游离细胞和细胞贴附模式下记录单个钙依赖性钾通道电流。应用30 μM ryanodine可短暂增强钙依赖性钾电流,而在细胞贴附条件下记录的单通道电流幅度无任何可检测到的变化。在膜片外翻模式下,当细胞内膜侧用10 mM EGTA缓冲的1 μM钙进行灌流时,浴槽中应用10 μM ryanodine对钙依赖性钾电流无影响。7. 得出的结论是,ITO和IOO均由细胞内储存库(主要是肌浆网)释放的钙产生。Ryanodine似乎不可逆地打开储存库中的钙通道,并由于储存钙的耗竭而抑制钙依赖性钾通道。

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