Seebohm G, Lerche C, Busch A E, Bachmann A
Aventis Pharma Deutschland, Frankfurt/M., Germany.
Pflugers Arch. 2001 Sep;442(6):891-5. doi: 10.1007/s004240100608.
The delayed rectifier potassium current I(Ks) is important for repolarization of the cardiac action potential. In heart I(Ks) is a heteromeric channel composed of KCNQ1 (KvLQT1) and minK (KCNE1, IsK). Here we show that the KCNQ1/minK interaction is influenced by the expression system. Co-expression of KCNQ1 and minK in Xenopus oocytes resulted in potassium currents comparable to endogenous guinea pig cardiac I(Ks) in terms of temperature dependency and activation kinetics. In contrast, heterologous expression of I(Ks) in CHO cells revealed currents with a markedly different biophysical behavior. The sensitivity to the extracellular potassium concentration, temperature dependency and kinetics differ qualitatively. Potentially there is an endogenous component that affects I(Ks) which does not appear in all expression systems.
延迟整流钾电流I(Ks)对心脏动作电位的复极化很重要。在心脏中,I(Ks)是一种由KCNQ1(KvLQT1)和minK(KCNE1,IsK)组成的异源通道。在此我们表明,KCNQ1/minK相互作用受表达系统的影响。在非洲爪蟾卵母细胞中共表达KCNQ1和minK,所产生的钾电流在温度依赖性和激活动力学方面与内源性豚鼠心脏I(Ks)相当。相比之下,I(Ks)在CHO细胞中的异源表达显示出具有明显不同生物物理行为的电流。对细胞外钾浓度的敏感性、温度依赖性和动力学在性质上有所不同。可能存在一种影响I(Ks)的内源性成分,而这种成分并非在所有表达系统中都出现。