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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >A calcium-activated, large conductance and non-selective cation channel in Paramecium cell
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A calcium-activated, large conductance and non-selective cation channel in Paramecium cell

机译:草履虫细胞中钙激活,大电导和非选择性阳离子通道

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A non-selective cation channel was found in mutant Paramecium cells (K115). This cell had been selected as a resistant mutant in a high-K+ solution. In patch clamp studies of these cells in the inside-out configuration, this channel was activated by bath applications of elevated Ca2+ concentrations. The channels became very active when the Ca2+ concentration was above 3.2 μM. The channel was also activated by depolarization. The voltage dependency was steep upon depolarization, whereas upon hyperpolarization the channel activity barely changed. This channel had poor selectivity for monovalent alkali cations. Using the Goldman–Hodgkin–Katz equation for the reversal potential, the permeability ratios with respect to K+ for Na+, Rb+, Cs+ and Li+ were nearly 1. Although the permeability ratios were similar for each cation, the single channel conductances differed. The single channel conductances were 467 pS with K+ as the charge carrier, 406 pS with Na+, 397 pS with Rb+, 253 pS with Cs+ and 198 pS with Li+ upon depolarization in 100 mM cation solutions. A similar calcium-activated large conductance channel was observed in the wild-type (G3) Paramecium cells but was very rare.
机译:在突变的草履虫细胞(K115)中发现了一个非选择性阳离子通道。该细胞已被选为高K +溶液中的抗性突变体。在由内而外配置的这些细胞的膜片钳研究中,该通道通过高浓度Ca2 +的浸浴激活。当Ca2 +浓度高于3.2μM时,通道变得非常活跃。该通道也通过去极化激活。电压相关性在去极化时陡峭,而在超极化时,通道活性几乎不变。该通道对一价碱性阳离子的选择性差。使用高盛-霍奇金-卡兹方程的反向电势,Na +,Rb +,Cs +和Li +相对于K +的磁导率接近1。尽管每种阳离子的磁导率相似,但单通道电导却不同。在100 mM阳离子溶液中去极化时,以K +为电荷载体的单通道电导为467 pS,以Na +为406 pS,以Rb +为397 pS,以Cs +为253 pS和以Li +为198 pS。在野生型(G3)草履虫细胞中观察到了类似的钙激活大电导通道,但非常罕见。

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