Fox J M
Biochim Biophys Acta. 1976 Mar 5;426(2):232-44. doi: 10.1016/0005-2736(76)90334-5.
(1) Voltage-clamp experiments were performed with myelinated fibres isolated from the sciatic nerve of the frog to study slow changes of the specific sodium and potassium currents as a function of membrane (holding) potential and time. (2) The level of the peak sodium current depends on holding potential VH. This dependence can be described by a sigmoidal function uinfinity(VH). The underlying process is called "ultra-slow sodium inactivation" and is different and separable from the short time steady-state inactivation, hinfinity(V), and from the slow inactivation depending on the extracellular potassium concentration (Adelman, Jr., W. J. and Palti, Y. (1969), J Gen. Physiol. 54, 589-606; Peganov, E. M., Khodorov, B.I. and Shishkova, L. D. (1973), Bull. Exp. Biol. Med. 25, 15-19; Khodorov, B. I. Shishkova, L. D. and Peganov, E. M. (1974), Bull. Exp. Biol. Med. 3, 10-14). (3) After a sudden change of the holding potential the sodium current reaches a new steady-state level (due to the transition of uinfinity(VH) to the corresponding value) within approx. 4 min. The kinetics of the transition cannot be described by a single exponential function. (4) A corresponding voltage- and time-dependent process of ultra-slow inactivation exists for the potassium current in the node of Ranvier. The kinetics are faster than those of the sodium system.
(1) 采用从青蛙坐骨神经分离出的有髓纤维进行电压钳实验,以研究特定钠电流和钾电流随膜(钳制)电位和时间的缓慢变化。(2) 钠电流峰值水平取决于钳制电位VH。这种依赖性可用S形函数uinfinity(VH)来描述。其潜在过程称为“超慢钠失活”,与短时稳态失活hinfinity(V)以及依赖于细胞外钾浓度的慢失活不同且可分离(阿德尔曼,小W. J.和帕尔蒂,Y.(1969年),《普通生理学杂志》54卷,589 - 606页;佩加诺夫,E. M.、霍多罗夫,B. I.和希什科娃,L. D.(1973年),《实验生物学与医学通报》25卷,15 - 19页;霍多罗夫,B. I.、希什科娃,L. D.和佩加诺夫,E. M.(1974年),《实验生物学与医学通报》3卷,10 - 14页)。(3) 钳制电位突然改变后,钠电流在约4分钟内达到新的稳态水平(由于uinfinity(VH)转变为相应值)。转变动力学不能用单一指数函数描述。(4) 郎飞结处的钾电流存在相应的电压和时间依赖性超慢失活过程。其动力学比钠系统的更快。