首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >ATP-dependent acidification and tonoplast hyperpolarization in isolated vacuoles from green suspension cells of Chenopodium rubrum L
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ATP-dependent acidification and tonoplast hyperpolarization in isolated vacuoles from green suspension cells of Chenopodium rubrum L

机译:红尘藜绿色悬浮细胞分离液泡中的ATP依赖性酸化和液泡膜超极化

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摘要

The tonoplast of isolated vacuoles from photoautotrophic suspension cells of Chenopodium rubrum L. was studied by means of the patch-clamp technique. In a symmetrical K+ concentration of 46 mM, similar to in vivo conditions, the tonoplast displayed a membrane potential near zero and a linear current-voltage relationship with a mean slope of 1.0 S/m2. ATP at 2 mM hyperpolarized the tonoplast (vacuole positive) by 15-20 mV and, in a parallel experiment, acidified the vacuole (outside pH 7.0) to pH 5.0, as monitored by accumulation of acridine orange. Analysis of the voltage-clamp current indicates a 2-fold, ATP-dependent increase of the membrane capacitance, from 4 to 8 mF/m2, and an ATP-independent, unidentified ion channel having a mean opening time of about 5 msec and a conductivity of 0.5-1.0 pS.
机译:利用膜片钳技术研究了来自红尘藜自养营养悬浮细胞的液泡的液泡膜。与体内条件相似,在对称的K + 浓度为46 mM时,液泡膜显示的膜电位接近零,并且线性电流-电压关系平均斜率为1.0 S / m 2 。 ATP在2 mM时将液泡膜(真空阳性)超极化15-20 mV,并在平行实验中将液泡(pH 7.0以外)酸化至pH 5.0,通过accumulation啶橙的积累进行监测。电压钳电流的分析表明,膜电容的ATP依赖性增加了2倍,从4 mF / m 2 增加,并且ATP依赖性的未识别离子通道的平均值打开时间约为5毫秒,电导率为0.5-1.0 pS。

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