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首页> 外文期刊>Naunyn-Schmiedeberg's Archives of Pharmacology >The transmembrane beta-subunits KCNE1, KCNE2, and DPP6 modify pharmacological effects of the antiarrhythmic agent tedisamil on the transient outward current Ito.
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The transmembrane beta-subunits KCNE1, KCNE2, and DPP6 modify pharmacological effects of the antiarrhythmic agent tedisamil on the transient outward current Ito.

机译:跨膜β-亚基KCNE1,KCNE2和DPP6改变了抗心律不齐药物泰地沙米对瞬时外向电流Ito的药理作用。

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摘要

Accessory beta-subunits modulate the pharmacology of ion channel blockers. The aim was to investigate differences in effects of the antiarrhythmic agent and open-channel blocker tedisamil on transient outward current I(to) (Kv4.3) when coexpressed with beta-subunits potassium voltage-gated channel, Isk-related family, member 1 (KCNE1), potassium voltage-gated channel, Isk-related family, member 2 (KCNE2), or dipeptidyl-aminopeptidase-like protein 6 (DPP6) which modulate I(to) kinetics. Tedisamil inhibited I(to) with IC(50) values of 16 microM for Kv4.3+KChIP2, 11 microM in the presence of KCNE1, and 14 microM for KCNE2. Values were higher in the presence of DPP6 or DPP6+KCNE2 (35 and 26 microM). K(d) values of tedisamil binding and rate constants were not affected by KCNE or DPP6. I(to) kinetics were accelerated by KCNE and DPP6, inactivation to a larger extent with DPP6. Tedisamil did not affect activation time course but apparently accelerated inactivation in all channel subunit combinations tested. Deletion of the intracellular domain of KCNE2 or DPP6 resulted in slowing of kinetics and increased tedisamil sensitivity (IC(50) 4 and 7 microM). It is concluded that apparent effects of DPP6 and deletion mutants (KCNE2 and DPP6) are due to the acceleration or slowing effects of the beta-subunits on I(to) kinetics.
机译:附件β亚基可调节离子通道阻滞剂的药理作用。目的是研究与β亚基钾电压门控通道共同表达的抗心律失常药和明渠阻断剂泰地米尔对瞬时外向电流I(to)(Kv4.3)的影响,Isk相关家族,成员1 (KCNE1),钾电压门控通道,Isk相关家族,成员2(KCNE2)或调节I(to)动力学的二肽基-氨基肽酶样蛋白6(DPP6)。 Tedisamil抑制I(to)的IC(50)值对于Kv4.3 + KChIP2为16 microM,在存在KCNE1时为11 microM,对于KCNE2为14 microM。在DPP6或DPP6 + KCNE2的存在下,值更高(35和26 microM)。泰地米尔结合的K(d)值和速率常数不受KCNE或DPP6的影响。 I(to)动力学由KCNE和DPP6加速,在很大程度上被DPP6灭活。 Tedisamil不会影响激活时间,但显然在所有测试的通道亚基组合中加速了灭活。 KCNE2或DPP6的胞内结构域的删除导致动力学减慢,并增加了泰地米尔的敏感性(IC(50)4和7 microM)。结论是DPP6和缺失突变体(KCNE2和DPP6)的明显作用是由于β亚基对I(to)动力学的加速或减慢作用。

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