Wittekindt Oliver H, Visan Violeta, Tomita Hiroaki, Imtiaz Faiqa, Gargus Jay J, Lehmann-Horn Frank, Grissmer Stephan, Morris-Rosendahl Deborah J
Department of Applied Physiology, University of Ulm, Ulm, Germany.
Mol Pharmacol. 2004 Mar;65(3):788-801. doi: 10.1124/mol.65.3.788.
We have isolated an hSK3 isoform from a human embryonic cDNA library that we have named hSK3_ex4. This isoform contains a 15 amino acid insertion within the S5 to P-loop segment. Transcripts encoding hSK3_ex4 are coexpressed at lower levels with hSK3 in neuronal as well as in non-neuronal tissues. To investigate the pharmacokinetic properties of hSK3_ex4, we expressed the isoforms hSK3 and hSK3_ex4 in tsA cells. Both isoforms were similarly activated by cytosolic Ca2+ (hSK3, EC50=0.91 +/- 0.4 microM; hSK3_ex4, EC50=0.78 +/- 0.2 microM) and by 1-ethyl-2-benzimidazolinone (hSK3, EC50=0.17 mM; hSK3_ex4, 0.19 mM). They were both blocked by tetraethylammonium (hSK3, Kd=2.2 mM; hSK3_ex4, 2.6 mM) and showed similar permeabilities relative to K+ for Cs+ (hSK3, 0.17 +/- 0.04, n=3; hSK3_ex4, 0.17 +/- 0.05, n=3) and Rb+ (hSK3, 0.79 +/- 0.04, n=3; hSK3_ex4, 0.8 +/- 0.07, n=3). Ba2+ blocked both isoforms, and in both cases, the block was strongest at hyperpolarizing membrane potentials. However, the voltage-dependence of hSK3 was stronger than that of hSK3_ex4. The most obvious distinguishing feature of this new isoform was that whereas hSK3 was blocked by apamin (Kd=0.8 nM), scyllatoxin (Kd=2.1 nM), and d-tubocurarine (Kd=33.4 microM), hSK3_ex4 was not affected by apamin up to 100 nM, scyllatoxin up to 500 nM, and d-tubocurarine up to 500 microM. So far, isoform hSK3_ex4 forms the only small-conductance calcium-activated potassium (SK) channels, which are insensitive to the classic SK blockers.
我们从人胚胎cDNA文库中分离出一种hSK3亚型,命名为hSK3_ex4。该亚型在S5至P环片段内有一个15个氨基酸的插入序列。编码hSK3_ex4的转录本在神经元组织和非神经元组织中与hSK3共表达,表达水平较低。为了研究hSK3_ex4的药代动力学特性,我们在tsA细胞中表达了hSK3和hSK3_ex4亚型。两种亚型均被胞质Ca2+(hSK3,EC50 = 0.91±0.4 microM;hSK3_ex4,EC50 = 0.78±0.2 microM)和1-乙基-2-苯并咪唑啉酮(hSK3,EC50 = 0.17 mM;hSK3_ex4,0.19 mM)类似地激活。它们均被四乙铵阻断(hSK3,Kd = 2.2 mM;hSK3_ex4,2.6 mM),并且相对于K+对Cs+(hSK3,0.17±0.04,n = 3;hSK3_ex4,0.17±0.05,n = 3)和Rb+(hSK3,0.79±0.04,n = 3;hSK3_ex4,0.8±0.07,n = 3)显示出相似的通透性。Ba2+阻断了两种亚型,并且在两种情况下,阻断在超极化膜电位时最强。然而,hSK3的电压依赖性强于hSK3_ex4。这种新亚型最明显的区别特征是,hSK3被蜂毒明肽(Kd = 0.8 nM)、刺尾鱼毒素(Kd = 2.1 nM)和d-筒箭毒碱(Kd = 33.4 microM)阻断,而hSK3_ex4在高达100 nM的蜂毒明肽、高达500 nM的刺尾鱼毒素和高达500 microM的d-筒箭毒碱作用下不受影响。到目前为止,hSK3_ex4亚型是唯一对经典SK阻滞剂不敏感的小电导钙激活钾(SK)通道。