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Regulation of Tonoplast K+ Channels by Voltage in the Range of Physiological Electric Potentials

机译:生理电势范围内的电压调节液泡膜K +通道

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摘要

The presence of tonoplast ion channels regulated by voltage in the physiological range of transtonoplast electric potential was studied in isolated vacuoles from Acer pseudoplatanus cultured cells. In symmetrical KCl or K-gluconate depolarizing pulses induced instantaneously developing, decaying outward currents, while in symmetrical tetramethylammonium chloride these currents were absent. The outward currents were reduced if the depolarizations were applied from a holding potential of +30 millivolts and increased upon depolarizations from a holding potential of −30 millivolts and even more from a holding potential of −50 millivolts. These results indicate that the outward currents are due to K+ movement through channels which are open around 0 millivolt and close at positive potentials. These K+ channels, regulated in the range of the physiological electric potentials reported for the vacuoles in situ, are likely the same K+ channels activated by hyperpolarizations which we have previously described (R Colombo, R Cerana, P Lado, A Peres [1988] J Membr Biol 103: 227-236).
机译:在由Acer pseudoplatanus培养的细胞分离的液泡中研究了在成膜细胞电位的生理范围内受电压调节的液泡膜离子通道的存在。在对称的KCl或K-葡萄糖酸去极化脉冲中,感应的电流瞬间产生,向外的电流衰减,而在对称的四甲基氯化铵中,这些电流不存在。如果从+30毫伏的保持电势施加了去极化,则向外的电流会减小,而从-30毫伏的保持电势产生去极化时,向外的电流会增加,而从-50毫伏的保持电势会产生更多的向外电流。这些结果表明,向外的电流归因于K + 穿过通道的运动,该通道在0毫伏左右时断开,并在正电势时闭合。这些K + 通道在原位液泡的生理电势范围内调节,可能与我们先前描述的超极化激活的相同的K + 通道相同(R Colombo,R Cerana,P Lado,A Peres [1988] J Membr Biol 103:227-236)。

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