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Voltage-activated proton currents in human lymphocytes

机译:人淋巴细胞中的电压激活质子电流

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摘要

Voltage-activated proton currents are reported for the first time in human peripheral blood T and B lymphocytes and in the human leukaemic T cell line Jurkat E6-1. The properties of H+ currents studied using tight-seal voltage-clamp recording techniques were similar in all cells. Changing the pH gradient by one unit caused a 47 mV shift in the reversal potential, demonstrating high selectivity of the channels for protons. H+ current activation upon membrane depolarisation had a sigmoidal time course that could be fitted by a single exponential function after a brief delay. Increasing pHo shifted the activation threshold to more negative potentials, and increased both the H+ current amplitude and the rate of activation. In lymphocytes studied at pHi 6.0, the activation threshold was more negative and the H+ current density was three times larger than at pHi 7.0. Increasing the intracellular Ca2+ concentration to 1 μm did not change H+ current amplitude or kinetics detectably. Extracellularly applied Zn2+ and Cd2+ inhibited proton currents, slowing activation and shifting the voltage–activation curve to more positive potentials. The H+ current amplitude was 100 times larger in CD19+ B lymphocytes and in Jurkat E6-1 cells than in CD3+ T lymphocytes. Following stimulation with the phorbol ester PMA, the H+ current density in peripheral blood T lymphocytes and Jurkat T cells increased. In contrast, the H+ current density of phorbol ester (PMA)-stimulated B lymphocytes was reduced and activation became slower. The pattern of expression of H+ channels in lymphocytes appears well suited to their proposed role of charge compensation during the respiratory burst.
机译:在人类外周血T和B淋巴细胞以及人类白血病T细胞系Jurkat E6-1中首次报道了电压激活的质子电流。使用紧密密封电压钳记录技术研究的H + 电流的性质在所有电池中都相似。将pH梯度更改一个单位会导致反转电位发生47 mV的偏移,这表明质子通道的选择性很高。膜去极化时H + 的电流激活具有S形时程,经过短暂的延迟后可以由单个指数函数拟合。 pHo的增加将激活阈值转移到更多的负电位,并增加了H + 电流幅度和激活速率。在pHi 6.0下研究的淋巴细胞中,激活阈值更负,H + 电流密度是pHi 7.0时的三倍。将细胞内Ca 2 + 浓度增加至1μm并没有改变H + 的电流幅度或动力学。细胞外施用的Zn 2 + 和Cd 2 + 抑制了质子电流,减慢了激活速度,并使电压激活曲线移动到了更大的正电位。 CD19 + B淋巴细胞和Jurkat E6-1细胞的H + 电流幅度是CD3 + T淋巴细胞的100倍。佛波酯PMA刺激后,外周血T淋巴细胞和Jurkat T细胞中H + 电流密度增加。相比之下,佛波酯(PMA)刺激的B​​淋巴细胞的H + 电流密度降低,并且活化变慢。淋巴细胞中H + 通道的表达方式似乎非常适合其在呼吸爆发期间电荷补偿的作用。

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