Pardo L A, Brüggemann A, Camacho J, Stühmer W
Max-Planck-Institut für experimentelle Medizin, D-37075 Göttingen, Germany.
J Cell Biol. 1998 Nov 2;143(3):767-75. doi: 10.1083/jcb.143.3.767.
Release from arrest in G2 phase of the cell cycle causes profound changes in rat ether-à-go-go (r-eag) K+ channels heterologously expressed in Xenopus oocytes. The most evident consequence of the onset of maturation is the appearance of rectification in the r-eag current. The trigger for these changes is located downstream of the activation of mitosis-promoting factor (MPF). We demonstrate here that the rectification is due to a voltage-dependent block by intracellular Na+ ions. Manipulation of the intracellular Na+ concentration indicates that the site of Na+ block is located approximately 45% into the electrical distance of the pore and is only present in oocytes undergoing maturation. Since the currents through excised patches from immature oocytes exhibited a fast rundown, we studied CHO-K1 cells permanently transfected with r-eag. These cells displayed currents with a variable degree of block by Na+ and variable permeability to Cs+. Partial synchronization of the cultures in G0/G1 or M phases of the cell cycle greatly reduced the variability. The combined data obtained from mammalian cells and oocytes strongly suggest that the permeability properties of r-eag K+ channels are modulated during cell cycle-related processes.
细胞周期G2期解除阻滞会使非洲爪蟾卵母细胞中异源表达的大鼠外向整流钾通道(r - eag)发生深刻变化。成熟开始最明显的结果是r - eag电流出现整流现象。这些变化的触发因素位于促有丝分裂因子(MPF)激活的下游。我们在此证明,整流是由于细胞内钠离子的电压依赖性阻断所致。对细胞内钠离子浓度的操控表明,钠离子阻断位点大约位于孔道电距离的45%处,且仅存在于正在成熟的卵母细胞中。由于来自未成熟卵母细胞的膜片钳记录的电流呈现快速衰减,我们研究了稳定转染r - eag的CHO - K1细胞。这些细胞表现出的电流被钠离子阻断的程度各异,对铯离子的通透性也不同。将细胞培养物部分同步于细胞周期的G0/G1期或M期可大大降低变异性。从哺乳动物细胞和卵母细胞获得的综合数据有力地表明,r - eag钾通道的通透性特性在细胞周期相关过程中受到调控。