Pischalnikova Anastasia V, Sokolova Olga S
Department of Bioengineering, Moscow State University, Faculty of Biology, 1 Leninskie Gory, Bld 12, 119991 Moscow, Russia.
J Neuroimmune Pharmacol. 2009 Mar;4(1):71-82. doi: 10.1007/s11481-008-9130-6. Epub 2008 Oct 3.
Potassium ion channels play critical roles in cell function, providing the maintenance of the membrane, repolarization of action potentials, and the regulation of firing frequency. Mutations in genes that interfere with K(v) ion channel function cause severe inherited diseases, such as episodic ataxia type 1, deafness, epilepsy, or cardiac arrhythmia. Because of their critical role in the central nervous system, all ion channels are targets for multiple pharmacologically active compounds. Better understanding of the structure and function of K(v) channels may eventually contribute to a more effective design of drugs. In this review, we show the recent data about domain organization of eukaryotic potassium voltage-gated ion channels. We are giving special attention to the interaction between the domains and the corresponding conformational changes upon activation of the channel.
钾离子通道在细胞功能中发挥着关键作用,维持细胞膜电位、使动作电位复极化以及调节放电频率。干扰K(v)离子通道功能的基因突变会导致严重的遗传性疾病,如1型发作性共济失调、耳聋、癫痫或心律失常。由于它们在中枢神经系统中的关键作用,所有离子通道都是多种药理活性化合物的作用靶点。更好地了解K(v)通道的结构和功能最终可能有助于更有效地设计药物。在这篇综述中,我们展示了关于真核生物钾离子电压门控离子通道结构域组织的最新数据。我们特别关注各结构域之间的相互作用以及通道激活时相应的构象变化。
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