首页> 美国卫生研究院文献>The Journal of General Physiology >Properties of Single Voltage-gated Proton Channels in Human Eosinophils Estimated by Noise Analysis and by Direct Measurement
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Properties of Single Voltage-gated Proton Channels in Human Eosinophils Estimated by Noise Analysis and by Direct Measurement

机译:噪声分析和直接测量估计人嗜酸性粒细胞中单电压门控质子通道的性质

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摘要

Voltage-gated proton channels were studied under voltage clamp in excised, inside-out patches of human eosinophils, at various pHi with pHo 7.5 or 6.5 pipette solutions. H+ current fluctuations were observed consistently when the membrane was depolarized to voltages that activated H+ current. At pHi ≤ 5.5 the variance increased nonmonotonically with depolarization to a maximum near the midpoint of the H+ conductance-voltage relationship, g H-V, and then decreased, supporting the idea that the noise is generated by H+ channel gating. Power spectral analysis indicated Lorentzian and 1/f components, both related to H+ currents. Unitary H+ current amplitude was estimated from stationary or quasi-stationary variance, . We analyze data obtained at various voltages on a linearized plot that provides estimates of both unitary conductance and the number of channels in the patch, without requiring knowledge of open probability. The unitary conductance averaged 38 fS at pHi 6.5, and increased nearly fourfold to 140 fS at pHi 5.5, but was independent of pHo. In contrast, the macroscopic g H was only 1.8-fold larger at pHi 5.5 than at pHi 6.5. The maximum H+ channel open probability during large depolarizations was 0.75 at pHi 6.5 and 0.95 at pHi 5.5. Because the unitary conductance increases at lower pHi more than the macroscopic g H, the number of functional channels must decrease. Single H+ channel currents were too small to record directly at physiological pH, but at pHi ≤ 5.5 near V threshold (the voltage at which g H turns on), single channel–like current events were observed with amplitudes 7–16 fA.
机译:在电压钳下,在pHo 7.5或6.5移液器的各种pHi下,在切除的人嗜酸性粒细胞的由内而外的片中研究了电压门控质子通道。当膜去极化至激活H + 电流的电压时,始终观察到H + 的电流波动。在pHi≤5.5时,方差随着去极化而非单调增加,在H + 电导-电压关系g HV的中点附近达到最大值,然后减小,这支持了由H < sup> + 通道门控。功率谱分析表明洛伦兹分量和1 / f分量都与H + 电流有关。 stationary H + 电流幅度是根据平稳或准平稳方差估计的。我们在线性图上分析了在各种电压下获得的数据,该图可提供单位电导和贴片中通道数的估计,而无需了解打开概率。在pHi 6.5时,平均电导平均为38 fS,在pHi 5.5时,平均电导增加近四倍,达到140 fS,但与pHo无关。相反,宏观pH在pHi 5.5下仅比pHi 6.5大1.8倍。大去极化期间最大的H + 通道打开概率在pHi 6.5时为0.75,在pHi 5.5时为0.95。由于在较低的pHi下单位电导比宏观的g H增加更多,因此功能通道的数量必须减少。单个H + 通道电流太小,无法直接在生理pH值下记录,但是在接近V阈值(g H 开启的电压)的pHi≤5.5时,单通道–观察到电流事件的幅度为7–16 fA。

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