Department of Molecular Biology and Ecology of Plants, George S. Wise Faculty of Life Sciences, Tel-Aviv University, Israel.
Cell Rep. 2012 Aug 30;2(2):242-8. doi: 10.1016/j.celrep.2012.06.016. Epub 2012 Jul 26.
Ion selectivity of metazoan voltage-gated Na(+) channels is critical for neuronal signaling and has long been attributed to a ring of four conserved amino acids that constitute the ion selectivity filter (SF) at the channel pore. Yet, in addition to channels with a preference for Ca(2+) ions, the expression and characterization of Na(+) channel homologs from the sea anemone Nematostella vectensis, a member of the early-branching metazoan phylum Cnidaria, revealed a sodium-selective channel bearing a noncanonical SF. Mutagenesis and physiological assays suggest that pore elements additional to the SF determine the preference for Na(+) in this channel. Phylogenetic analysis assigns the Nematostella Na(+)-selective channel to a channel group unique to Cnidaria, which diverged >540 million years ago from Ca(2+)-conducting Na(+) channel homologs. The identification of Cnidarian Na(+)-selective ion channels distinct from the channels of bilaterian animals indicates that selectivity for Na(+) in neuronal signaling emerged independently in these two animal lineages.
后生动物电压门控 Na(+) 通道的离子选择性对于神经元信号传递至关重要,长期以来一直归因于构成通道孔离子选择性过滤器 (SF) 的四个保守氨基酸环。然而,除了对 Ca(2+) 离子有偏好的通道外,海葵 Nematostella vectensis 的 Na(+) 通道同源物的表达和特征,该海葵是早期分支的后生动物门刺胞动物门的成员,揭示了一种具有非典型 SF 的钠离子选择性通道。突变和生理测定表明,SF 以外的孔元件决定了该通道对 Na(+)的偏好。系统发育分析将海葵的 Na(+)-选择性通道分配到一个独特的通道群,该通道群与 Ca(2+) 导电 Na(+) 通道同源物在 5.4 亿多年前分化。后生动物 Na(+)-选择性离子通道的鉴定与两侧动物的通道不同,表明神经元信号传递中对 Na(+)的选择性在这两个动物谱系中是独立出现的。