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相似文献

1
Inactivation of sodium channels: second order kinetics in myelinated nerve.钠通道的失活:有髓神经中的二级动力学
J Physiol. 1977 Dec;273(3):573-96. doi: 10.1113/jphysiol.1977.sp012111.
2
Development of sodium permeability inactivation in nodal membranes.结细胞膜中钠通透性失活的发展。
J Physiol. 1981;313:37-48. doi: 10.1113/jphysiol.1981.sp013649.
3
A quantitative description of membrane currents in rabbit myelinated nerve.兔有髓神经膜电流的定量描述。
J Physiol. 1979 Jul;292:149-66. doi: 10.1113/jphysiol.1979.sp012843.
4
The variance of sodium current fluctuations at the node of Ranvier.郎飞结处钠电流波动的方差。
J Physiol. 1980 Oct;307:97-129. doi: 10.1113/jphysiol.1980.sp013426.
5
Relations between the inactivation of sodium channels and the immobilization of gating charge in frog myelinated nerve.蛙有髓神经中钠通道失活与门控电荷固定之间的关系。
J Physiol. 1980 Feb;299:573-603. doi: 10.1113/jphysiol.1980.sp013143.
6
Modification of sodium channel gating in frog myelinated nerve fibres by Centruroides sculpturatus scorpion venom.雕塑异距蝎毒液对蛙有髓神经纤维钠通道门控的修饰作用。
J Physiol. 1975 Jan;244(2):511-34. doi: 10.1113/jphysiol.1975.sp010810.
7
Inconsistent sodium current records derived on Ranvier nodes with a commercially available potential clamp device according to Nonner.根据诺纳的说法,用市售电位钳装置在郎飞结上获得的钠电流记录不一致。
Gen Physiol Biophys. 1988 Dec;7(6):557-67.
8
Conductance fluctuations from the inactivation process of sodium channels in myelinated nerve fibres.有髓神经纤维中钠通道失活过程引起的电导波动。
J Physiol. 1980 Nov;308:217-39. doi: 10.1113/jphysiol.1980.sp013469.
9
A comparison of sodium currents in rat and frog myelinated nerve: normal and modified sodium inactivation.大鼠和青蛙有髓神经钠电流的比较:正常和改变的钠失活
J Physiol. 1987 Jan;382:175-91. doi: 10.1113/jphysiol.1987.sp016362.
10
Evidence for the presence of potassium channels in the paranodal region of acutely demyelinated mammalian single nerve fibres.急性脱髓鞘哺乳动物单神经纤维结旁区存在钾通道的证据。
J Physiol. 1981;313:415-37. doi: 10.1113/jphysiol.1981.sp013674.

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Role of the Guanidinium Groups in Ligand-Receptor Binding of Arginine-Containing Short Peptides to the Slow Sodium Channel: Quantitative Approach to Drug Design of Peptide Analgesics.胍基在含精氨酸短肽与慢钠通道配体-受体结合中的作用:肽类镇痛药药物设计的定量方法。
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2
Fast inactivation of Nav current in rat adrenal chromaffin cells involves two independent inactivation pathways.大鼠肾上腺嗜铬细胞 Nav 电流的快速失活涉及两种独立的失活途径。
J Gen Physiol. 2021 Apr 5;153(4). doi: 10.1085/jgp.202012784.
3
Na and K channels: history and structure.钠钾通道:历史与结构。
Biophys J. 2021 Mar 2;120(5):756-763. doi: 10.1016/j.bpj.2021.01.013. Epub 2021 Jan 21.
4
Slowly inactivating component of Na+ current in peri-somatic region of hippocampal CA1 pyramidal neurons.海马 CA1 锥体神经元胞体周围区域中钠电流的缓慢失活成分。
J Neurophysiol. 2013 Mar;109(5):1378-90. doi: 10.1152/jn.00435.2012. Epub 2012 Dec 12.
5
Augmentation of recovery from inactivation by site-3 Na channel toxins. A single-channel and whole-cell study of persistent currents.通过3位点钠通道毒素增强失活后的恢复。持续性电流的单通道和全细胞研究。
J Gen Physiol. 1999 Feb;113(2):333-46. doi: 10.1085/jgp.113.2.333.
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Inactivation kinetics of sensory neuron sodium channels depend on the type of hydrogen ion buffer.感觉神经元钠通道的失活动力学取决于氢离子缓冲剂的类型。
Neurosci Behav Physiol. 1998 Jan-Feb;28(1):65-71. doi: 10.1007/BF02461914.
7
Molecular mechanism of use-dependent calcium channel block by phenylalkylamines: role of inactivation.苯烷基胺对使用依赖性钙通道的阻断作用的分子机制:失活的作用。
Proc Natl Acad Sci U S A. 1997 Nov 25;94(24):13323-8. doi: 10.1073/pnas.94.24.13323.
8
Tail currents in the myelinated axon of Xenopus laevis suggest a two-open-state Na channel.非洲爪蟾有髓轴突中的尾电流表明存在一种双开放态钠通道。
Biophys J. 1997 Jul;73(1):179-85. doi: 10.1016/S0006-3495(97)78058-5.
9
Kinetic parameters of the ionic currents in myelinated axons: characterization of temperature effects in a hibernator and a nonhibernator.有髓轴突中离子电流的动力学参数:冬眠动物和非冬眠动物温度效应的特征
Pflugers Arch. 1996 Apr;431(6):888-94. doi: 10.1007/s004240050082.
10
Mechanism of voltage-dependent gating in skeletal muscle chloride channels.骨骼肌氯离子通道中电压依赖性门控的机制。
Biophys J. 1996 Aug;71(2):695-706. doi: 10.1016/S0006-3495(96)79269-X.

本文引用的文献

1
The dual effect of membrane potential on sodium conductance in the giant axon of Loligo.枪乌贼巨大轴突中膜电位对钠电导的双重作用。
J Physiol. 1952 Apr;116(4):497-506. doi: 10.1113/jphysiol.1952.sp004719.
2
Membrane currents in isolated frog nerve fibre under voltage clamp conditions.电压钳制条件下分离的蛙神经纤维中的膜电流。
J Physiol. 1958 Aug 29;143(1):76-90. doi: 10.1113/jphysiol.1958.sp006045.
3
A quantitative description of membrane current and its application to conduction and excitation in nerve.膜电流的定量描述及其在神经传导和兴奋中的应用。
J Physiol. 1952 Aug;117(4):500-44. doi: 10.1113/jphysiol.1952.sp004764.
4
Evidence for two types of sodium conductance in axons perfused with sodium fluoride solution.在灌注氟化钠溶液的轴突中存在两种钠电导的证据。
J Physiol. 1970 Dec;211(3):653-78. doi: 10.1113/jphysiol.1970.sp009298.
5
Sodium inactivation. Experimental test of two models.钠失活。两种模型的实验测试。
Biophys J. 1970 Jul;10(7):610-7. doi: 10.1016/S0006-3495(70)86323-8.
6
The permeability of the sodium channel to organic cations in myelinated nerve.有髓神经中钠通道对有机阳离子的通透性。
J Gen Physiol. 1971 Dec;58(6):599-619. doi: 10.1085/jgp.58.6.599.
7
A quantitative description of end-plate currents.终板电流的定量描述。
J Physiol. 1972 May;223(1):173-97. doi: 10.1113/jphysiol.1972.sp009840.
8
Inactivation of the sodium current in Myxicola giant axons. Evidence for coupling to the activation process.黏液虫巨型轴突中钠电流的失活。与激活过程偶联的证据。
J Gen Physiol. 1972 Jun;59(6):659-75. doi: 10.1085/jgp.59.6.659.
9
[Sodium conductance of the nodal membrane: competitive calcium-sodium inhibition].[结间膜的钠电导:钙 - 钠竞争性抑制]
C R Acad Hebd Seances Acad Sci D. 1971 Jun 7;272(23):2924-7.
10
Charge movement associated with the opening and closing of the activation gates of the Na channels.与钠通道激活门的开启和关闭相关的电荷移动。
J Gen Physiol. 1974 May;63(5):533-52. doi: 10.1085/jgp.63.5.533.

钠通道的失活:有髓神经中的二级动力学

Inactivation of sodium channels: second order kinetics in myelinated nerve.

作者信息

Chiu S Y

出版信息

J Physiol. 1977 Dec;273(3):573-96. doi: 10.1113/jphysiol.1977.sp012111.

DOI:10.1113/jphysiol.1977.sp012111
PMID:304888
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1353749/
Abstract
  1. Kinetics of inactivation of sodium channels in myelinated nerve from Rana pipiens were studied at 4.5 degrees C using the voltage clamp technique of Dodge & Frankenhaeuser (1958).2. Potassium currents were blocked by cutting the internodes in 20 mM-TEA-Cl + 100 mM-KCl and by adding 12 mM-TEA-Cl to the external Ringer. Leakage and capacitative currents were subtracted electronically.3. Kinetics of recovery from inactivation of the sodium channels were studied by inactivating the channels with a large depolarizing prepulse and allowing the channels to recover at different potentials; the extent of recovery was measured by applying a test pulse at various times after the prepulse.4. Kinetics of development of inactivation were studied by two different methods. The first was to measure the decay of sodium current under a maintained depolarization. The second method was to measure the decay of the peak sodium current in a test pulse as a function of time after the onset of a maintained depolarization. These two methods yielded similar results for the kinetics of inactivation development.5. Contrary to expectations of the Hodgkin-Huxley formalism, the time course of recovery from and development of inactivation is not strictly exponential. Rather, recovery from complete inactivation shows an initial delay which depends on recovery potentials. Development of inactivation at a fixed potential exhibits at least two exponentials.6. The steady-state inactivation curve h(infinity)(E) is asymmetrical and is fitted better by 1/[1+exp (A(1)E+B(1)) +exp (A(2)E+B(2))] than by 1/[1+exp (AE+B)].7. Most of the above kinetic observation on inactivation can be fitted by the following modification of the h system of the Hodgkin-Huxley formalism: [Formula: see text]8. In the analysis it was not necessary to modify the concept of two separate processes, activation and inactivation, governing the opening and closing of the sodium channels.
摘要
  1. 采用道奇和弗兰肯豪泽(1958年)的电压钳技术,在4.5摄氏度下研究了牛蛙有髓神经中钠通道的失活动力学。

  2. 通过在20 mM - TEA - Cl + 100 mM - KCl中切断节间以及向外部林格氏液中添加12 mM - TEA - Cl来阻断钾电流。通过电子方式减去泄漏电流和电容性电流。

  3. 通过用大的去极化预脉冲使通道失活并让通道在不同电位下恢复来研究钠通道从失活中恢复的动力学;在预脉冲后的不同时间施加测试脉冲来测量恢复程度。

  4. 通过两种不同方法研究失活发展的动力学。第一种方法是在持续去极化下测量钠电流的衰减。第二种方法是测量测试脉冲中峰值钠电流在持续去极化开始后的衰减随时间的变化。这两种方法在失活发展动力学方面产生了相似的结果。

  5. 与霍奇金 - 赫胥黎形式体系的预期相反,从失活中恢复和失活发展的时间进程并非严格指数形式。相反,从完全失活中恢复表现出初始延迟,这取决于恢复电位。在固定电位下失活的发展至少呈现两个指数形式。

  6. 稳态失活曲线h(∞)(E)是不对称的,用1/[1 + exp(A₁E + B₁) + exp(A₂E + B₂)]比用1/[1 + exp(AE + B)]拟合得更好。

  7. 上述关于失活的大多数动力学观察结果可以通过对霍奇金 - 赫胥黎形式体系的h系统进行如下修改来拟合:[公式:见原文]

  8. 在分析中,没有必要修改关于控制钠通道开放和关闭的两个独立过程(激活和失活)的概念。