Hamilton D W, Hills A, Kohler B, Blatt M R
Laboratory of Plant Physiology and Biophysics, Imperial College of Science, Technology, and Medicine, Wye, Kent TN25 5AH, England.
Proc Natl Acad Sci U S A. 2000 Apr 25;97(9):4967-72. doi: 10.1073/pnas.080068897.
In stomatal guard cells of higher-plant leaves, abscisic acid (ABA) evokes increases in cytosolic free Ca(2+) concentration (Ca(2+)) by means of Ca(2+) entry from outside and release from intracellular stores. The mechanism(s) for Ca(2+) flux across the plasma membrane is poorly understood. Because Ca(2+) increases are voltage-sensitive, we suspected a Ca(2+) channel at the guard cell plasma membrane that activates on hyperpolarization and is regulated by ABA. We recorded single-channel currents across the Vicia guard cell plasma membrane using Ba(2+) as a charge-carrying ion. Both cell-attached and excised-patch measurements uncovered single-channel events with a maximum conductance of 12.8 +/- 0.4 pS and a high selectivity for Ba(2+) (and Ca(2+)) over K(+) and Cl(-). Unlike other Ca(2+) channels characterized to date, these channels rectified strongly toward negative voltages with an open probability (P(o)) that increased with [Ba(2+)] outside and decreased roughly 10-fold when Ca(2+) was raised from 200 nM to 2 microM. Adding 20 microM ABA increased P(o), initially by 63- to 260-fold; in both cell-attached and excised patches, it shifted the voltage sensitivity for channel activation, and evoked damped oscillations in P(o) with periods near 50 s. A similar, but delayed response was observed in 0.1 microM ABA. These results identify a Ca(2+)-selective channel that can account for Ca(2+) influx and increases in Ca(2+) triggered by voltage and ABA, and they imply a close physical coupling at the plasma membrane between ABA perception and Ca(2+) channel control.
在高等植物叶片的气孔保卫细胞中,脱落酸(ABA)通过从细胞外进入和从细胞内储存库释放钙离子,使胞质游离钙离子浓度([Ca²⁺]i)升高。钙离子跨质膜流动的机制尚不清楚。由于[Ca²⁺]i升高对电压敏感,我们推测保卫细胞质膜上存在一种钙离子通道,它在超极化时被激活并受ABA调节。我们以钡离子(Ba²⁺)作为载流离子,记录了蚕豆保卫细胞质膜上的单通道电流。细胞贴附式和膜片钳测量均发现了单通道事件,其最大电导为12.8±0.4 pS,对Ba²⁺(和Ca²⁺)的选择性远高于K⁺和Cl⁻。与迄今已鉴定的其他钙离子通道不同,这些通道向负电压方向强烈整流,开放概率(P(o))随细胞外[Ba²⁺]升高而增加,而当[Ca²⁺]i从200 nM升高到2 μM时,开放概率大约降低10倍。添加20 μM ABA最初使P(o)增加63至260倍;在细胞贴附式和膜片钳记录中,它改变了通道激活的电压敏感性,并在P(o)中引发了周期接近50秒 的阻尼振荡。在0.1 μM ABA中观察到类似但延迟的反应。这些结果鉴定出一种钙离子选择性通道,它可以解释由电压和ABA触发的钙离子内流以及[Ca²⁺]i升高,这意味着在质膜上ABA感知与钙离子通道控制之间存在紧密的物理偶联。