Department of Biology, Indiana University-Purdue University at Indianapolis, Indianapolis, Indiana 46223.
Plant Physiol. 1987 Oct;85(2):413-8. doi: 10.1104/pp.85.2.413.
Potassium and chloride channels were characterized in Asclepias tuberosa suspension cell derived protoplasts by patch voltage-clamp. Whole-cell currents and single channels in excised patches had linear instantaneous current-voltage relations, reversing at the Nernst potentials for K(+) and Cl(-), respectively. Whole cell K(+) currents activated exponentially during step depolarizations, while voltage-dependent Cl(-) channels were activated by hyperpolarizations. Single K(+) channel conductance was 40 +/- 5 pS with a mean open time of 4.5 milliseconds at 100 millivolts. Potassium channels were blocked by Cs(+) and tetraethylammonium, but were insensitive to 4-aminopyridine. Chloride channels had a single-channel conductance of 100 +/- 17 picosiemens, mean open time of 8.8 milliseconds, and were blocked by Zn(2+) and ethacrynic acid. Whole-cell Cl(-) currents were inhibited by abscisic acid, and were unaffected by indole-3-acetic acid and 2,4-dichlorophenoxyacetic acid. Since internal and external composition can be controlled, patch-clamped protoplasts are ideal systems for studying the role of ion channels in plant physiology and development.
利用膜片钳电压箝位技术对从马利筋悬浮细胞原生质体制备的原生质体进行研究,鉴定了钾离子和氯离子通道。全细胞电流和在膜片钳上分离的单个通道具有线性瞬间电流-电压关系,分别在钾离子和氯离子的能斯特电位处反转。全细胞钾离子电流在阶跃去极化时呈指数激活,而电压依赖性氯离子通道则通过超极化激活。在 100 毫伏时,单个钾离子通道电导为 40 ± 5 皮西门子,平均开放时间为 4.5 毫秒。钾通道被 Cs+和四乙铵阻断,但对 4-氨基吡啶不敏感。氯离子通道的单通道电导为 100 ± 17 皮西门子,平均开放时间为 8.8 毫秒,被 Zn2+和依他酸阻断。全细胞氯离子电流被脱落酸抑制,而吲哚-3-乙酸和 2,4-二氯苯氧乙酸对其没有影响。由于可以控制内外组成,因此膜片钳夹制的原生质体是研究离子通道在植物生理学和发育中的作用的理想系统。