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兔雪旺细胞中两种对4-氨基吡啶敏感的钾电流。

Two types of 4-aminopyridine-sensitive potassium current in rabbit Schwann cells.

作者信息

Baker M, Howe J R, Ritchie J M

机构信息

Department of Pharmacology, Yale University School of Medicine, New Haven, CT 06510.

出版信息

J Physiol. 1993 May;464:321-42. doi: 10.1113/jphysiol.1993.sp019637.

Abstract
  1. Delayed rectifier K+ currents were studied in Schwann cells cultured from neonatal rabbit sciatic nerves with the whole-cell patch-clamp technique. 2. Depolarizing voltage steps (40 ms duration) activated two types of K+ current: type I, whose apparent activation threshold was about -60 mV (half-maximal conductance at -40 +/- 1 mV, n = 10); and type II, whose apparent activation threshold was about -25 mV (half-maximal conductance at + 11 +/- 1 mV, n = 9). 3. Type I current was blocked by alpha-dendrotoxin (alpha-DTX) with an apparent equilibrium dissociation constant (KD) of 1.3 nM, whereas the type II current was unaffected by exposure to 500 nM toxin. The action of alpha-DTX on the type I current was reversible. 4. Most cells exhibited both types of current, but occasionally some cells displayed just type I or just type II. 5. Type I current activated rapidly and then showed a much slower fade, which became more noticeable with larger depolarizations. Activation of type II current was slower than that of type I and depended less steeply on voltage. The time constants of activation for type I and type II currents were derived with a Hodgkin-Huxley formalism (based on second-power activation and deactivation kinetics). The longest activation time constant for type II gating was more than twice the corresponding time constant for type I; however, the time constants determined from tail current decays at potentials more negative than -60 mV were shorter for the type II currents than for the type I currents. 6. Both type I and type II currents were sensitive to micromolar concentrations of 4-aminopyridine (4-AP). The KD for 4-AP blockade of type II current was 630 microM (pH 7.2, membrane potential (Em) = -10 mV), which is about 6 times higher than the corresponding value for 4-AP blockade of type I current at negative membrane potentials. The differential sensitivity of the type I and type II currents to 4-AP may account for the apparent voltage dependence of 4-AP block of delayed rectifier K+ currents. 7. In addition to types I and II, a third type of outward K+ current (type III) was generated in most cells at positive membrane potentials. This latter current was insensitive to millimolar concentrations of 4-AP. 8. Similarities between Schwann cell and neuronal potassium channels are discussed.
摘要
  1. 采用全细胞膜片钳技术,对新生兔坐骨神经培养的雪旺细胞中的延迟整流钾电流进行了研究。2. 去极化电压阶跃(持续时间40毫秒)激活了两种类型的钾电流:I型,其明显的激活阈值约为-60毫伏(在-40±1毫伏时达到最大电导的一半,n = 10);II型,其明显的激活阈值约为-25毫伏(在+11±1毫伏时达到最大电导的一半,n = 9)。3. I型电流被α-银环蛇毒素(α-DTX)阻断,其表观平衡解离常数(KD)为1.3纳摩尔,而II型电流在暴露于500纳摩尔毒素时不受影响。α-DTX对I型电流的作用是可逆的。4. 大多数细胞表现出两种类型的电流,但偶尔有些细胞只表现出I型或只表现出II型。5. I型电流迅速激活,然后衰减得慢得多,去极化幅度越大越明显。II型电流的激活比I型慢,且对电压的依赖性较小。I型和II型电流的激活时间常数是用霍奇金-赫胥黎形式主义(基于二次幂激活和失活动力学)推导出来的。II型门控的最长激活时间常数是I型相应时间常数的两倍多;然而,在比-60毫伏更负的电位下,由尾电流衰减确定的II型电流的时间常数比I型电流的短。6. I型和II型电流对微摩尔浓度的4-氨基吡啶(4-AP)都敏感。4-AP阻断II型电流的KD为630微摩尔(pH 7.2,膜电位(Em)=-10毫伏),这比在负膜电位下4-AP阻断I型电流的相应值高约6倍。I型和II型电流对4-AP的不同敏感性可能解释了4-AP对延迟整流钾电流阻断的明显电压依赖性。7. 除了I型和II型,大多数细胞在正膜电位下还产生了第三种外向钾电流(III型)。后一种电流对毫摩尔浓度的4-AP不敏感。8. 讨论了雪旺细胞和神经元钾通道之间的相似性。

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