Pershadsingh H A, Stubbs E B, Noteboom W D, Vorbeck M L, Martin A P
Biochim Biophys Acta. 1985 Dec 19;821(3):445-52. doi: 10.1016/0005-2736(85)90049-5.
The involvement of Ca2+-activated K+ channels in the regulation of the plasma membrane potential and electrogenic uptake of glycine in SP 2/0-AG14 lymphocytes was investigated using the potentiometric indicator 3,3'-diethylthiodicarbocyanine iodide. The resting membrane potential was estimated to be -57 +/- 6 mV (n = 4), a value similar to that of normal lymphocytes. The magnitude of the membrane potential and the electrogenic uptake of glycine were dependent on the extracellular K+ concentration, [K+]o, and were significantly enhanced by exogenous calcium. The apparent Vmax of Na+-dependent glycine uptake was doubled in the presence of calcium, whereas the K0.5 was not affected. Ouabain had no influence on the membrane potential under the conditions employed. Additional criteria used to demonstrate the presence of Ca2+-activated K+ channels included the following: (1) addition of EGTA to calcium supplemented cells elicited a rapid depolarization of the membrane potential that was dependent on [K+]o; (2) the calmodulin antagonist, trifluoperazine, depolarized the membrane potential in a dose-dependent and saturable manner with an IC50 of 9.4 microM; and (3) cells treated with the Ca2+-activated K+ channel antagonist, quinine, demonstrated an elevated membrane potential and depressed electrogenic glycine uptake. Results from the present study provide evidence for Ca2+-activated K+ channels in SP 2/0-AG14 lymphocytes, and that their involvement regulates the plasma membrane potential and thereby the electrogenic uptake of Na+-dependent amino acids.
使用电位指示剂3,3'-二乙基硫代二碳菁碘化物,研究了Ca2+激活的K+通道在SP 2/0-AG14淋巴细胞中对质膜电位调节以及甘氨酸电驱动摄取的作用。静息膜电位估计为-57±6 mV(n = 4),该值与正常淋巴细胞相似。膜电位的大小和甘氨酸的电驱动摄取取决于细胞外K+浓度[K+]o,并被外源钙显著增强。在存在钙的情况下,Na+依赖性甘氨酸摄取的表观Vmax增加了一倍,而K0.5不受影响。在所采用的条件下,哇巴因对膜电位没有影响。用于证明存在Ca2+激活的K+通道的其他标准包括:(1)向补充钙的细胞中添加EGTA会引起膜电位的快速去极化,这取决于[K+]o;(2)钙调蛋白拮抗剂三氟拉嗪以剂量依赖性和饱和方式使膜电位去极化,IC50为9.4 microM;(3)用Ca2+激活的K+通道拮抗剂奎宁处理的细胞表现出膜电位升高和电驱动甘氨酸摄取降低。本研究结果为SP 2/0-AG14淋巴细胞中存在Ca2+激活的K+通道提供了证据,并且它们的参与调节质膜电位,从而调节Na+依赖性氨基酸的电驱动摄取。