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离子通道变色龙:通过选择性剪接切换离子选择性。

Ion channel chameleons: Switching ion selectivity by alternative splicing.

机构信息

Department of Physiology and Cellular Biophysics, Columbia University, New York, New York, USA.

Department of Physiology and Cellular Biophysics, Columbia University, New York, New York, USA.

出版信息

J Biol Chem. 2023 Mar;299(3):102946. doi: 10.1016/j.jbc.2023.102946. Epub 2023 Jan 24.

Abstract

Voltage-gated sodium and calcium channels are distinct, evolutionarily related ion channels that achieve remarkable ion selectivity despite sharing an overall similar structure. Classical studies have shown that ion selectivity is determined by specific binding of ions to the channel pore, enabled by signature amino acid sequences within the selectivity filter (SF). By studying ancestral channels in the pond snail (Lymnaea stagnalis), Guan et al. showed in a recent JBC article that this well-established mechanism can be tuned by alternative splicing, allowing a single Ca3 gene to encode both a Ca-permeable and an Na-permeable channel depending on the cellular context. These findings shed light on mechanisms that tune ion selectivity in physiology and on the evolutionary basis of ion selectivity.

摘要

电压门控钠离子和钙离子通道是截然不同的、进化上相关的离子通道,尽管它们具有总体相似的结构,但却实现了惊人的离子选择性。经典研究表明,离子选择性是由离子与通道孔的特异性结合决定的,这是由选择性过滤器 (SF) 内的特征氨基酸序列实现的。通过研究池塘蜗牛 (Lymnaea stagnalis) 中的祖先通道,关等人在最近的 JBC 文章中表明,这种成熟的机制可以通过选择性剪接进行调节,允许单个 Ca3 基因根据细胞环境编码既具有钙渗透性又具有钠渗透性的通道。这些发现揭示了调节生理学中离子选择性的机制以及离子选择性的进化基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a76/10017353/4d078e685e7b/gr1.jpg

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