Weiss J L, Yang J, Jie C, Walker D L, Ahmed S, Zhu Y, Huang Y, Johansen K M, Johansen J
Department of Zoology and Genetics, Iowa State University, Ames 50011, USA.
J Neurobiol. 1999 Feb 5;38(2):287-99.
We have cloned a novel voltage-gated K channel, LKv1, in two species of leech. The properties of LKv1 expressed in transiently transfected HEK293 cells is that of a delayed rectifier current. LKv1 may be a major modulator of excitability in leech neurons, since antibody localization studies show that LKv1 is expressed in the soma and axons of all neurons in both the central and peripheral nervous systems. Comparison of the biophysical and pharmacological properties of LKv1 with native voltage-gated conductances in leech neurons suggests that LKv1 may correspond to the previously characterized delayed rectifier current, I(K). Phylogenetic analysis of LKv1 shows that it is related to the Shaker subfamily of voltage-gated K channels although it occupies a separate branch from that of the monophyletic Shaker clade composed of the flatworm, Aplysia, Drosophila, and mammalian Shaker homologs as well as from that of two recently identified Shaker-related K channels in jellyfish. Thus, this analysis indicates that this group of voltage-gated K channels contains several evolutionarily divergent lineages.
我们在两种水蛭中克隆了一种新型电压门控钾通道LKv1。在瞬时转染的HEK293细胞中表达的LKv1具有延迟整流电流的特性。LKv1可能是水蛭神经元兴奋性的主要调节因子,因为抗体定位研究表明,LKv1在中枢和外周神经系统的所有神经元的胞体和轴突中均有表达。将LKv1的生物物理和药理学特性与水蛭神经元中的天然电压门控电导进行比较表明,LKv1可能与先前表征的延迟整流电流I(K)相对应。LKv1的系统发育分析表明,它与电压门控钾通道的Shaker亚家族相关,尽管它与由扁虫、海兔、果蝇和哺乳动物Shaker同源物组成的单系Shaker进化枝以及最近在水母中鉴定的两种与Shaker相关的钾通道处于不同的分支。因此,该分析表明,这组电压门控钾通道包含几个进化上不同的谱系。