Suppr超能文献

位于非洲爪蟾有髓轴突节段区域的钠激活钾通道。

Na(+)-activated K+ channels localized in the nodal region of myelinated axons of Xenopus.

作者信息

Koh D S, Jonas P, Vogel W

机构信息

Physiologisches Institut, Justus-Liebig-Universität, Giessen, Germany.

出版信息

J Physiol. 1994 Sep 1;479 ( Pt 2)(Pt 2):183-97. doi: 10.1113/jphysiol.1994.sp020287.

Abstract
  1. A potassium channel activated by internal Na+ ions (K+Na channel) was identified in peripheral myelinated axons of Xenopus laevis using the cell-attached and excised configurations of the patch clamp technique. 2. The single-channel conductance for the main open state was 88 pS with [K+]o = 105 mM and pS with [K+]o = 2.5 mM ([K+]i = 105 mM). The channel was selectively permeable to K+ over Na+ ions. A characteristic feature of the K+Na channel was the frequent occurrence of subconductance states. 3. The open probability of the channel was strongly dependent on the concentration of Na+ ions at the inner side of the membrane. The half-maximal activating Na+ concentration and the Hill coefficient were 33 mM and 2.9, respectively. The open probability of the channel showed only weak potential dependence. 4. The K+Na channel was relatively insensitive to external tetraethylammonium (TEA+) in comparison with voltage-dependent axonal K+ channels; the half-maximal inhibitory concentration (IC50) was 21.3 mM (at -90 mV). In contrast, the channel was blocked by low concentrations of external Ba2+ and Cs+ ions, with IC50 values of 0.7 and 1.1 mM, respectively (at -90 mV). The block by Ba2+ and Cs+ was more pronounced at negative than at positive membrane potentials. 5. A comparison of the number of K+Na channels in nodal and paranodal patches from the same axon revealed that the channel density was about 10-fold higher at the node of Ranvier than at the paranode. Moreover, a correlation between the number of K+Na channels and voltage-dependent Na+ channels in the same patches was found, suggesting co-localization of both channel types. 6. As weakly potential-dependent ('leakage') channels, axonal K+Na channels may be involved in setting the resting potential of vertebrate axons. Simulations of Na+ ion diffusion suggest two possible mechanisms of activation of K+Na channels: the local increase of Na+ concentration in a cluster of Na+ channels during a single action potential or the accumulation in the intracellular axonal compartment during a train of action potentials.
摘要
  1. 利用膜片钳技术的细胞贴附式和切除式配置,在非洲爪蟾的外周有髓轴突中鉴定出一种由细胞内钠离子激活的钾通道(K⁺-Na通道)。2. 在[K⁺]ₒ = 105 mM时,主要开放状态的单通道电导为88 pS,在[K⁺]ₒ = 2.5 mM([K⁺]ᵢ = 105 mM)时为[具体数值] pS。该通道对K⁺的选择性高于Na⁺。K⁺-Na通道的一个特征是频繁出现亚电导状态。3. 通道的开放概率强烈依赖于膜内侧钠离子的浓度。半最大激活钠离子浓度和希尔系数分别为33 mM和2.9。通道的开放概率仅表现出微弱的电位依赖性。4. 与电压依赖性轴突钾通道相比,K⁺-Na通道对外界四乙铵(TEA⁺)相对不敏感;半最大抑制浓度(IC₅₀)为21.3 mM(在-90 mV时)。相反,该通道被低浓度的外界Ba²⁺和Cs⁺离子阻断,IC₅₀值分别为0.7和1.1 mM(在-90 mV时)。Ba²⁺和Cs⁺的阻断在负膜电位时比正膜电位时更明显。5. 对同一轴突的结区和旁结区膜片上K⁺-Na通道数量的比较表明,郎飞结处的通道密度比旁结处高约10倍。此外,在同一膜片中发现K⁺-Na通道数量与电压依赖性Na⁺通道之间存在相关性,表明这两种通道类型共定位。6. 作为弱电位依赖性(“泄漏”)通道,轴突K⁺-Na通道可能参与设定脊椎动物轴突的静息电位。钠离子扩散模拟表明K⁺-Na通道激活的两种可能机制:单个动作电位期间钠离子通道簇中钠离子浓度的局部增加或一串动作电位期间细胞内轴突区室中的积累。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c70/1155738/8450e14b2c74/jphysiol00342-0022-a.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验