Jensen B S, Hertz M, Christophersen P, Madsen L S
Section of Ion Channel Pharmacology, NeuroSearch A/S, 93 Pederstrupvej, DK-2750 Ballerup, Denmark.
Expert Opin Ther Targets. 2002 Dec;6(6):623-36. doi: 10.1517/14728222.6.6.623.
The intermediate conductance Ca2+-activated K+ (IK) channel is distinguished from the functionally related Ca2+-activated K+ channels of smaller and larger unitary conductance by its molecular structure, pharmacology, tissue distribution and physiology. Like many K+ channels, IK is an assembly of four identical subunits each spanning the membrane six times and each contributing equally to the K+ selectivity pore positioned centrally in the complex. The IK channel gains its high sensitivity to intracellular Ca2+ from tightly bound calmodulin, and its activity is independent of the membrane potential. Several toxins including charybdotoxin and the more selective mutant, Glu32-charybdotoxin, maurotoxin and stichodactyla toxin potently block IK channels. Among blockers of the IK channel are also several small organic molecules including the antimycotic clotrimazole and the close analogues TRAM-34 and ICA-17043, as well as the antihypertensive, nitrendipine. The IK channel is distributed in peripheral tissues, including secretory epithelia and blood cells, but it appears absent from neuronal and muscle tissue. An important physiological role of the IK channel is to help maintain large electrical gradients for the sustained transport of ions such as Ca2+ influx that controls T lymphocyte (T cell) proliferation. In this review, special attention is given to an analysis of the use of IK blockers as potential immunosuppressants for the treatment of autoimmune disorders such as rheumatoid arthritis, inflammatory bowel disease and multiple sclerosis.
中电导钙激活钾(IK)通道在分子结构、药理学、组织分布和生理学方面与功能相关但电导大小不同的钙激活钾通道有所区别。与许多钾通道一样,IK通道由四个相同的亚基组成,每个亚基跨膜六次,且对位于复合物中心的钾选择性孔道的贡献相同。IK通道对细胞内钙离子的高敏感性源于紧密结合的钙调蛋白,其活性与膜电位无关。包括蝎毒素、更具选择性的突变体Glu32 - 蝎毒素、马罗毒素和刺尾鱼毒素在内的几种毒素能有效阻断IK通道。IK通道的阻滞剂还包括几种小分子有机物,如抗真菌药克霉唑及其类似物TRAM - 34和ICA - 17043,以及抗高血压药尼群地平。IK通道分布于外周组织,包括分泌上皮和血细胞,但在神经组织和肌肉组织中似乎不存在。IK通道的一个重要生理作用是帮助维持大的电势梯度,以持续运输离子,如控制T淋巴细胞(T细胞)增殖的钙离子内流。在这篇综述中,特别关注了对IK阻滞剂作为潜在免疫抑制剂用于治疗类风湿性关节炎、炎症性肠病和多发性硬化症等自身免疫性疾病的应用分析。