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鸡胚外胚层中一种可被Ca(2+)阻断的单价阳离子通道的通透特性:用有机阳离子和Ca2+探测孔径和多占据情况

Permeation properties of a Ca(2+)-blockable monovalent cation channel in the ectoderm of the chick embryo: pore size and multioccupancy probed with organic cations and Ca2+.

作者信息

Sabovcik R, Li J, Kucera P, Prod'hom B

机构信息

Department of Physiology, University of Lausanne, Switzerland.

出版信息

J Gen Physiol. 1995 Aug;106(2):149-74. doi: 10.1085/jgp.106.2.149.

Abstract

A Ca(2+)-blockable monovalent cation channel is present in the apical membrane of the ectoderm of the gastrulating chick embryo. We used the patch clamp technique to study several single-channel permeation properties of this channel. In symmetrical conditions without Ca2+, the Na+ current carried by the channel rectifies inwardly. The channel has an apparent dissociation constant for extracellular Na+ of 115 mM at 0 mV and a low density of negative surface charge (-0.03 e/nm2) at its extracellular entrance. The minimal pore diameter is approximately 5.8 A, as calculated from the relative permeabilities of 10 small organic cations. Extracellular application of six large organic cations decreased the inward Na+ current in a voltage-dependent manner, which strongly suggests an intrachannel block. The presence of at least two ion binding sites inside the pore is inferred from the Na+ dependence of the block by the organic cations. This hypothesis is strengthened by the fact that the extracellular Ca2+ block is also modified by the Na+ concentration. In particular, the rise of the unblocking rate with increased Na+ concentrations clearly suggests the presence of an interaction between Ca2+ and Na+ inside the channel. A low probability of double occupancy at physiological ionic conditions is implied from the absence of an anomalous mole fraction effect with mixtures of extracellular Li+ and K+. Finally, the absence of inward current at very strong hyperpolarizations and in the presence of 10 mM extracellular Ca2+ demonstrates the absence of significant Ca2+ current through this channel. It is argued that this embryonic epithelial Ca(2+)-blockable monovalent cation channel is related to both L-type Ca2+ channel and cyclic nucleotide-gated channels.

摘要

在原肠胚形成期的鸡胚外胚层顶端膜中存在一种可被Ca(2+)阻断的单价阳离子通道。我们使用膜片钳技术研究了该通道的几种单通道通透特性。在没有Ca2+的对称条件下,该通道携带的Na+电流向内整流。该通道在0 mV时对细胞外Na+的表观解离常数为115 mM,在其细胞外入口处表面负电荷密度较低(-0.03 e/nm2)。根据10种小有机阳离子的相对渗透率计算,最小孔径约为5.8 Å。细胞外施加六种大有机阳离子以电压依赖性方式降低了内向Na+电流,这强烈表明存在通道内阻断。从有机阳离子对Na+的依赖性阻断可推断孔内至少存在两个离子结合位点。细胞外Ca2+阻断也受Na+浓度影响这一事实强化了这一假设。特别是,随着Na+浓度增加,解除阻断速率的上升清楚地表明通道内Ca2+与Na+之间存在相互作用。细胞外Li+和K+混合物不存在异常摩尔分数效应,这意味着在生理离子条件下双重占据的概率较低。最后,在非常强的超极化以及存在10 mM细胞外Ca2+时没有内向电流,这表明通过该通道不存在显著的Ca2+电流。有人认为这种胚胎上皮Ca(2+)可阻断单价阳离子通道与L型Ca2+通道和环核苷酸门控通道都有关。

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