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N型钙离子通道中离子渗透途径的功能特性

Functional characterization of ion permeation pathway in the N-type Ca2+ channel.

作者信息

Wakamori M, Strobeck M, Niidome T, Teramoto T, Imoto K, Mori Y

机构信息

Department of Information Physiology, National Institute for Physiological Sciences, Okazaki, Aichi 444, Japan.

出版信息

J Neurophysiol. 1998 Feb;79(2):622-34. doi: 10.1152/jn.1998.79.2.622.

Abstract

Multiple types of high-voltage-activated Ca2+ channels, including L-, N-, P-, Q- and R-types have been distinguished from each other mainly employing pharmacological agents that selectively block particular types of Ca2+ channels. Except for the dihydropyridine-sensitive L-type Ca2+ channels, electrophysiological characterization has yet to be conducted thoroughly enough to biophysically distinguish the remaining Ca2+ channel types. In particular, the ion permeation properties of N-type Ca2+ channels have not been clarified, although the kinetic properties of both the L- and N-type Ca2+ channels are relatively well described. To establish ion conducting properties of the N-type Ca2+ channel, we examined a homogeneous population of recombinant N-type Ca2+ channels expressed in baby hamster kidney cells, using a conventional whole cell patch-clamp technique. The recombinant N-type Ca2+ channel, composed of the alpha1B, alpha2a, and beta1a subunits, displayed high-voltage-activated Ba2+ currents elicited by a test pulse more positive than -30 mV, and were strongly blocked by the N-type channel blocker omega-conotoxin-GVIA. In the presence of 110 mM Ba2+, the unitary current showed a slope conductance of 18.2 pS, characteristic of N-type channels. Ca2+ and Sr2+ resulted in smaller ion fluxes than Ba2+, with the ratio 1.0:0. 72:0.75 of maximum conductance in current-voltage relationships of Ba2+, Ca2+, and Sr2+ currents, respectively. In mixtures of Ba2+ and Ca2+, where the Ca2+ concentration was steadily increased in place of Ba2+, with the total concentration of Ba2+ and Ca2+ held constant at 3 mM, the current amplitude went through a clear minimum when 20% of the external Ba2+ was replaced by Ca+2. This anomalous mole fraction effect suggests an ion-binding site where two or more permeant ions can sit simultaneously. By using an external solution containing 110 mM Na+ without polyvalent cations, inward Na+ currents were evoked by test potentials more positive than -50 mV. These currents were activated and inactivated in a kinetic manner similar to that of Ba2+ currents. Application of inorganic Ca2+ antagonists blocked Ba2+ currents through N-type channels in a concentration-dependent manner. The rank order of inhibition was La3+ >/= Cd2+ >> Zn2+ > Ni2+ >/= Co2+. When a short strong depolarization was applied before test pulses of moderate depolarizing potentials, relief from channel blockade by La3+ and Cd2+ and subsequent channel reblocking was observed. The measured rate (2 x 10(8) M-1 s-1) of reblocking approached the diffusion-controlled limit. These results suggest that N-type Ca2+ channels share general features of a high affinity ion-binding site with the L-type Ca2+ channel, and that this site is easily accessible from the outside of the channel pore.

摘要

多种类型的高压激活Ca2+通道,包括L型、N型、P型、Q型和R型,主要是通过使用选择性阻断特定类型Ca2+通道的药物来相互区分的。除了对二氢吡啶敏感的L型Ca2+通道外,电生理特性尚未得到充分研究,无法从生物物理学角度区分其余的Ca2+通道类型。特别是,尽管L型和N型Ca2+通道的动力学特性已有相对较好的描述,但N型Ca2+通道的离子通透特性尚未明确。为了确定N型Ca2+通道的离子传导特性,我们使用传统的全细胞膜片钳技术,研究了在幼仓鼠肾细胞中表达的重组N型Ca2+通道的同质群体。由α1B、α2a和β1a亚基组成的重组N型Ca2+通道,在测试脉冲大于-30 mV时会产生高压激活的Ba2+电流,并被N型通道阻滞剂ω-芋螺毒素-GVIA强烈阻断。在110 mM Ba2+存在的情况下,单通道电流的斜率电导为18.2 pS,这是N型通道的特征。Ca2+和Sr2+导致的离子通量比Ba2+小,在Ba2+、Ca2+和Sr2+电流的电流-电压关系中,最大电导的比例分别为1.0:0.72:0.75。在Ba2+和Ca2+的混合物中,当Ca2+浓度逐渐增加以替代Ba2+,且Ba2+和Ca2+的总浓度保持在3 mM不变时,当20%的外部Ba2+被Ca2+替代时,电流幅度明显降至最低。这种异常摩尔分数效应表明存在一个离子结合位点,两个或更多的通透离子可以同时占据该位点。通过使用不含多价阳离子的110 mM Na+外部溶液,在测试电位大于-50 mV时可诱发内向Na+电流。这些电流的激活和失活动力学方式与Ba2+电流相似。无机Ca2+拮抗剂以浓度依赖的方式阻断通过N型通道的Ba2+电流。抑制的顺序为La3+≥Cd2+>>Zn2+>Ni2+≥Co2+。当在中等去极化电位的测试脉冲之前施加短暂的强去极化时,观察到La3+和Cd2+对通道的阻断解除以及随后的通道重新阻断。测得的重新阻断速率(2×108 M-1 s-1)接近扩散控制极限。这些结果表明,N型Ca2+通道与L型Ca2+通道具有高亲和力离子结合位点的一般特征,并且该位点很容易从通道孔的外部进入。

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