首页> 美国卫生研究院文献>The Journal of Physiology >Proton-induced sodium current in freshly dissociated hypothalamic neurones of the rat.
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Proton-induced sodium current in freshly dissociated hypothalamic neurones of the rat.

机译:质子诱导的大鼠新鲜下丘脑神经元中的钠电流。

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摘要

1. The proton-gated current was investigated in freshly dissociated ventromedial hypothalamic (VMH) neurones from 4-week-old Wistar rats, under whole-cell configuration by the use of the 'concentration-clamp' technique which combines intracellular perfusion with the rapid exchange of external solution within 1-2 ms under a single-electrode voltage-clamp condition. 2. The proton-gated current increased in a sigmoidal fashion as extracellular pH (pHo) decreased. In external solution containing 2 mM-Ca2+, the threshold of current activation was at pHo 6.5, and the maximum response appeared at pHo 4.1-3.9. The dissociation constant (Kd) and Hill coefficient were 10(-4.9) M (pHo = 4.9) and 1.5 respectively. 3. Decreasing extracellular Na+ concentration reduced the proton-gated current. The current reversed direction at the Na+ equilibrium potential (ENa), indicating that it was carried by Na+. 4. The activation phase kinetics of proton-induced current was single exponential. The time constant of activation (tau a) did not have a potential dependence but decreased slightly by decreasing pHo. The inactivation phase kinetics was two-exponential. The time constant of inactivation (tau i) consisted of fast and slow components (tau if and tau is, respectively). Like tau a, both tau if and tau is did not have any potential dependence, but they slightly increased with decreasing pHo. 5. The steady-state inactivation curve, constructed by decreasing pHo from various conditioning pHos to 4.1, revealed that the proton-induced current had a half-maximum inactivation at pHo 6.2. 6. The proton-induced current was suppressed as the extracellular Ca2+ concentration ([Ca2+]o) increased from almost free (0.01 mM) to 80 mM. Increasing [Ca2+]o increased tau a, but slightly decreased both tau if and tau is. 7. Recovery of proton-induced current from complete inactivation of proton-induced current depended on the degree of pHo change. A bigger change in pHo induced faster recovery than a smaller change. 8. External divalent cations inhibited the proton-induced current, and the inhibitory potency was in the order of Mn2+ greater than Co2+ greater than Ca2+ greater than Sr2+ greater than Ba2+ greater than Mg2+. 9. Tetrodotoxin (TTX) at relatively low concentration (less than 10(-7) M) did not inhibit the peak amplitude of the proton-induced current, but at a higher concentration (10(-6) M) it slightly inhibited the peak amplitude of the current and accelerated the inactivation process. Scorpion toxin markedly increased the peak amplitude of the proton-induced current and prolonged the inactivation phase. The tau is was also increased by scorpion toxin in a concentration-dependent manner. Veratridine had no effect on the proton-induced current. 10. The membrane properties of the proton-operated channel were similar to those of the voltage-gated Na+ channel rather than the Ca2+ channel.
机译:1.通过使用“浓度钳”技术结合细胞内灌注和快速的“浓缩钳”技术,在全细胞配置下研究了来自4周龄Wistar大鼠的新鲜离解的腹膜下丘脑(VMH)神经元的质子门控电流。在单电极电压钳制条件下1-2毫秒内交换外部溶液。 2.随着细胞外pH(pHo)的降低,质子门控电流以S形增加。在含有2 mM-Ca2 +的外部溶液中,电流激活的阈值在pHo 6.5,最大响应出现在pHo 4.1-3.9。解离常数(Kd)和希尔系数分别为10(-4.9)M(pHo = 4.9)和1.5。 3.降低细胞外Na +浓度会降低质子门控电流。在Na +平衡电势(ENa)处,电流反向,表明它由Na +携带。 4.质子感应电流的活化相动力学是单指数的。激活的时间常数(tau a)没有潜在的依赖性,但是通过降低pHo略有降低。失活相动力学是二指数的。灭活的时间常数(tau i)由快速和慢速成分组成(tau if和tau分别为)。像tau a一样,tau if和tau都没有任何潜在的依赖性,但是随着pHo的降低它们略有增加。 5.通过将pHo从各种条件pHos降低到4.1所构建的稳态失活曲线表明,质子感应电流在pHo 6.2处具有最大灭活的一半。 6.随着细胞外Ca2 +浓度([Ca2 +] o)从几乎没有(0.01 mM)增加到80 mM,质子感应电流得到抑制。增加[Ca2 +] o会增加tau a,但如果tau和tau都略微降低。 7.从质子感应电流完全失活中恢复质子感应电流取决于pHo变化的程度。 pHo的较大变化比较小的变化引起更快的恢复。 8.外部二价阳离子抑制了质子感应电流,并且抑制效力的顺序为:Mn2 +大于Co2 +大于Ca2 +大于Sr2 +大于Ba2 +大于Mg2 +。 9.相对较低浓度(小于10(-7)M)的河豚毒素(TTX)不会抑制质子感应电流的峰值,但是在较高浓度(10(-6)M)时它会稍微抑制电流的峰值幅度加快了灭活过程。蝎毒素显着增加了质子感应电流的峰值幅度,并延长了灭活阶段。蝎毒素也以浓度依赖性方式增加了tau。藜芦定对质子感应电流没有影响。 10.质子操纵通道的膜性质类似于电压门控的Na +通道而不是Ca2 +通道。

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