Bentzen Bo Hjorth, Nardi Antonio, Calloe Kirstine, Madsen Lars Siim, Olesen Søren-Peter, Grunnet Morten
NeuroSearch A/S, Pederstrupvej 93, DK-2750 Ballerup, Denmark.
Mol Pharmacol. 2007 Oct;72(4):1033-44. doi: 10.1124/mol.107.038331. Epub 2007 Jul 16.
Large-conductance Ca(2+)- and voltage-activated K(+) channels (Kca1.1/BK/MaxiK) are widely expressed ion channels. They provide a Ca(2+)-dependent feedback mechanism for the regulation of various body functions such as blood flow, neurotransmitter release, uresis, and immunity. In addition, a mitochondrial K(+) channel with KCa1.1-resembling properties has been found in the heart, where it may be involved in regulation of energy consumption. In the present study, the effect of a novel NeuroSearch compound, 1-(3,5-bis-trifluoromethyl-phenyl)-3-[4-bromo-2-(1H-tetrazol-5-yl)-phenyl]-thiourea (NS11021), was investigated on cloned KCa1.1 expressed in Xenopus laevis oocytes and mammalian cells using electrophysiological methods. NS11021 at concentrations above 0.3 microM activated KCa1.1 in a concentration-dependent manner by parallel-shifting the channel activation curves to more negative potentials. Single-channel analysis revealed that NS11021 increased the open probability of the channel by altering gating kinetics without affecting the single-channel conductance. NS11021 (10 microM) influenced neither a number of cloned Kv channels nor endogenous Na(+) and Ca(2+) channels (L- and T-type) in guinea pig cardiac myocytes. In conclusion, NS11021 is a novel KCa1.1 channel activator with better specificity and a 10 times higher potency compared with the most broadly applied KCa1.1 opener, NS1619. Thus, NS11021 might be a valuable tool compound when addressing the physiological and pathophysiological roles of KCa1.1 channels.
大电导钙(2 +)和电压激活钾(+)通道(Kca1.1 / BK / MaxiK)是广泛表达的离子通道。它们为调节各种身体功能(如血流、神经递质释放、排尿和免疫)提供了一种钙(2 +)依赖性反馈机制。此外,在心脏中发现了一种具有类似KCa1.1特性的线粒体钾(+)通道,它可能参与能量消耗的调节。在本研究中,使用电生理方法研究了一种新型NeuroSearch化合物1-(3,5-双三氟甲基苯基)-3-[4-溴-2-(1H-四氮唑-5-基)苯基]-硫脲(NS11021)对非洲爪蟾卵母细胞和哺乳动物细胞中克隆表达的KCa1.1的影响。浓度高于0.3 microM的NS11021通过将通道激活曲线平行移向更负的电位,以浓度依赖性方式激活KCa1.1。单通道分析表明,NS11021通过改变门控动力学增加了通道的开放概率,而不影响单通道电导。NS11021(10 microM)对豚鼠心肌细胞中的多种克隆Kv通道以及内源性钠(+)和钙(2 +)通道(L型和T型)均无影响。总之,与应用最广泛的KCa1.1开放剂NS1619相比,NS11021是一种新型的KCa1.1通道激活剂,具有更好的特异性和高10倍的效力。因此,在研究KCa1.1通道的生理和病理生理作用时,NS11021可能是一种有价值的工具化合物。