Suppr超能文献

单个视网膜视锥光感受器内节中的钾电流。

Potassium currents in the inner segment of single retinal cone photoreceptors.

作者信息

Maricq A V, Korenbrot J I

机构信息

Department of Physiology, School of Medicine, University of California, San Francisco 94143.

出版信息

J Neurophysiol. 1990 Dec;64(6):1929-40. doi: 10.1152/jn.1990.64.6.1929.

Abstract
  1. The K+ currents of cone inner segments isolated from the retina of a lizard were studied with the use of tight-seal electrodes in the whole cell configuration. To conduct these studies other identified currents in the cell were blocked. Co2+ blocked a voltage-dependent Ca2+ current and a Ca2(+)-dependent Cl- current, and Cs+ blocked an inward-rectifying current partially carried by K+. 2. The cells sustained a voltage-dependent K+ current that was blocked by tetraethylammonium (TEA)+ and had characteristics typical of the delayed rectifier. However, we found no evidence for the existence of "A"-type K+ currents or Ca2(+)-dependent K+ currents. 3. The delayed-rectifier current was nearly ideally selective for K+. Increasing external K+ concentration 10-fold shifted the reversal potential by 55 mV. 4. Analysis of the voltage dependence of the activation of the delayed-rectifier current revealed the existence of two distinct subclasses of this current. We referred to them as IdrL and IdrH for low and high threshold of voltage activation. 5. IdrL activated at voltages above -70 mV. Its dependence on voltage was described by Boltzmann's function with average half-maximum activation at -51 mV and steepness factor k = 7.5 mV. IdrH activated at voltages above -50 mV. Its dependence on voltage was described by Boltzmann's function with average half-maximum activation at -4.6 mV and steepness factor k = 17.1 mV. 6. Of nine cells analyzed in detail, one demonstrated IdrH alone, whereas the remaining had a variable mixture of the two current subtypes. At maximum activation the current through IdrL ranged between 0.3 and 0.5 of the total delayed-rectifier current. 7. The kinetics of activation of the total delayed-rectifier current were described by the sum of two exponentials the amplitudes and time constants of which were voltage dependent. However, the kinetics of the current subtypes were not resolved individually. The current inactivated slowly with a single-exponential time course that was voltage dependent. 8. The voltage dependence of the delayed-rectifier current indicates the current is active in a cone photoreceptor in the dark. The current is 20-30 pA in amplitude at the dark-membrane potential and outwardly directed. 9. IdrL may generate a rapid relaxation of photovoltages activated by dim lights--those that hyperpolarize the membrane by only a few millivolts. The delayed-rectifier currents help shape the action potentials that can be generated in isolated cone photoreceptors.
摘要
  1. 采用全细胞模式的紧密封装电极,研究了从蜥蜴视网膜分离出的视锥细胞内段的钾离子电流。为进行这些研究,细胞中的其他已知电流被阻断。钴离子阻断了电压依赖性钙离子电流和钙离子依赖性氯离子电流,铯离子阻断了部分由钾离子携带的内向整流电流。2. 这些细胞维持着一种电压依赖性钾离子电流,该电流被四乙铵(TEA)阻断,具有延迟整流器的典型特征。然而,我们没有发现存在“A”型钾离子电流或钙离子依赖性钾离子电流的证据。3. 延迟整流电流对钾离子几乎具有理想的选择性。将细胞外钾离子浓度增加10倍,使反转电位偏移55毫伏。4. 对延迟整流电流激活的电压依赖性分析揭示了该电流存在两个不同的亚类。我们将它们分别称为IdrL和IdrH,代表低电压激活阈值和高电压激活阈值。5. IdrL在高于 -70毫伏的电压下激活。其对电压的依赖性可用玻尔兹曼函数描述,平均半最大激活电压为 -51毫伏,陡度因子k = 7.5毫伏。IdrH在高于 -50毫伏的电压下激活。其对电压的依赖性可用玻尔兹曼函数描述,平均半最大激活电压为 -4.6毫伏,陡度因子k = 17.1毫伏。6. 在详细分析的九个细胞中,一个仅表现出IdrH,而其余细胞具有两种电流亚型的不同组合。在最大激活时,通过IdrL的电流在总延迟整流电流的0.3至0.5之间。7. 总延迟整流电流的激活动力学可用两个指数之和来描述,其幅度和时间常数与电压有关。然而,电流亚型的动力学未被单独解析。电流以单指数时间进程缓慢失活,且与电压有关。8. 延迟整流电流的电压依赖性表明该电流在暗环境下的视锥光感受器中处于激活状态。在暗膜电位时,该电流幅度为20 - 30皮安,方向向外。9. IdrL可能会使由暗光激活的光电压快速松弛——那些仅使膜超极化几毫伏的光。延迟整流电流有助于塑造在分离的视锥光感受器中可能产生的动作电位。

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