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首页> 外文期刊>The Journal of Experimental Biology >Expression of a poriferan potassium channel: insights into the evolution of ion channels in metazoans
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Expression of a poriferan potassium channel: insights into the evolution of ion channels in metazoans

机译:poriferan钾通道的表达:后生离子通道进化的见解。

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摘要

Ion channels establish and regulate membrane potentials in excitable and non-excitable cells. How functional diversification of ion channels contributed to the evolution of nervous systems may be understood by studying organisms at key positions in the evolution of animal multicellularity. We have carried out the first analysis of ion channels cloned from a marine sponge, Amphimedon queenslandica. Phylogenetic comparison of sequences encoding for poriferan inward-rectifier K(+) (Kir) channels suggests that Kir channels from sponges, cnidarians and triploblastic metazoans each arose from a single channel and that duplications arose independently in the different groups. In Xenopus oocytes, AmqKirA and AmqKirB produced K(+) currents with strong inward rectification, as seen in the mammalian Kir2 channels, which are found in excitable cells. The pore properties of AmqKir channels demonstrated strong K(+) selectivity and block by Cs(+) and Ba(2+). We present an original analysis of sponge ion channel physiology and an examination of the phylogenetic relationships of this channel with other cloned Kir channels.
机译:离子通道在可兴奋和不可兴奋的细胞中建立并调节膜电位。通过研究动物多细胞性进化关键部位的生物,可以理解离子通道的功能多样化如何促进神经系统的进化。我们已经对从海洋海绵Amphimedon queenslandica克隆的离子通道进行了首次分析。系统发育比较的编码poriferan内向整流器K(+)(Kir)通道的序列表明,海绵,cnidarians和三叶裂的后生动物的Kir通道分别来自单个通道,并且重复出现在不同的组中。在非洲爪蟾卵母细胞中,AmqKirA和AmqKirB产生具有强向内整流作用的K(+)电流,如在可兴奋细胞中发现的哺乳动物Kir2通道中所见。 AmqKir通道的孔性能表现出较强的K(+)选择性,并被Cs(+)和Ba(2+)阻断。我们提出了海绵离子通道生理学的原始分析,并检查了该通道与其他克隆的Kir通道的系统发育关系。

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