Yao J A, Saxena N C, Ziai M R, Ling S, Tseng G N
Department of Pharmacology, Columbia University, New York, New York 10032, USA.
Mol Pharmacol. 1995 Jul;48(1):160-71.
n-Dodecylguanidine (C12-G) is an amphipathic compound with a guanidine moiety, which is positively charged at physiological pH, and a hydrophobic side chain. Its effects on an A-type K+ channel clone (rKv1.4) expressed in Xenopus oocytes were examined. C12-G caused a concentration-dependent (1-20 microM) positive shift in the voltage dependences of the following channel properties: activation, inactivation, rate of decay during depolarization, and rate of recovery from inactivation. C12-G was effective when added to the bath solution but was without effect when applied to the cytoplasm of oocytes, indicating an extracellular site of action. The effects of C12-G were antagonized by elevation of the extracellular Mg2+ concentration and by external guanidine ions but were augmented by lowering of the ionic strength of the external solution. C12-G did not affect the instantaneous current-voltage relationship for rKv1.4 or the time constant of decay during strong depolarizations, when the voltage dependence of channel activation approached a plateau. Our observations suggest that C12-G exerts its actions by causing a positive shift in the external surface potential around rKv1.4, without altering the ion permeation process or voltage-independent transition steps. In canine ventricular myocytes, C12-G caused changes in the function of a native A-type K+ channel similar to those seen with rKv1.4. However, C12-G had negligible effects on the voltage dependence of the slow delayed-rectifier K+ channel in the same cell type, suggesting that the actions of C12-G are not nonspecific.
正十二烷基胍(C12-G)是一种具有胍基部分的两亲性化合物,在生理pH值下带正电荷,并有一个疏水侧链。研究了其对非洲爪蟾卵母细胞中表达的一种A型钾通道克隆(rKv1.4)的影响。C12-G导致以下通道特性的电压依赖性出现浓度依赖性(1-20微摩尔)正向偏移:激活、失活、去极化期间的衰减速率以及从失活状态恢复的速率。将C12-G添加到浴液中时有效,但应用于卵母细胞的细胞质时则无效,表明其作用位点在细胞外。细胞外Mg2+浓度升高和外部胍离子可拮抗C12-G的作用,但降低外部溶液的离子强度则会增强其作用。当通道激活的电压依赖性接近平台期时,C12-G不影响rKv1.4的瞬时电流-电压关系或强去极化期间的衰减时间常数。我们的观察结果表明,C12-G通过使rKv1.4周围的外表面电位发生正向偏移来发挥其作用,而不改变离子渗透过程或电压非依赖性转变步骤。在犬心室肌细胞中,C12-G引起的天然A型钾通道功能变化与rKv1.4所见相似。然而,C12-G对同一细胞类型中慢延迟整流钾通道的电压依赖性影响可忽略不计,这表明C12-G的作用并非非特异性的。