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截短的βIV-血影蛋白Sigma6在轴突起始段和郎飞结处钠通道聚集中的特定作用。

Specific role of the truncated betaIV-spectrin Sigma6 in sodium channel clustering at axon initial segments and nodes of ranvier.

作者信息

Uemoto Yoko, Suzuki So-Ichiro, Terada Nobuo, Ohno Nobuhiko, Ohno Shinichi, Yamanaka Shinya, Komada Masayuki

机构信息

Department of Biological Sciences, Tokyo Institute of Technology, Yokohama 226-8501, Japan.

出版信息

J Biol Chem. 2007 Mar 2;282(9):6548-55. doi: 10.1074/jbc.M609223200. Epub 2006 Dec 29.

Abstract

At axon initial segments and nodes of Ranvier in neurons, the spectrin membrane skeleton plays roles in physically stabilizing the plasma membrane integrity and in clustering voltage-gated sodium channels for proper conduction of the action potential. betaIV-Spectrin, an essential component of the membrane skeleton at these sites, has an N-terminal-truncated isoform, Sigma6, which is expressed at much higher levels than the full-length isoform Sigma1. To investigate the role of betaIV-spectrin Sigma6, we generated Sigma1-deficient mice with a normal level of Sigma6 expression (Sigma1(-/-) mice), and compared their phenotypes with those of previously generated mice lacking both Sigma1 and Sigma6(Sigma1Sigma6(-/-) mice). The gross neurological defects observed in Sigma1Sigma6(-/-) mice, such as hindleg contraction, were apparently ameliorated in Sigma1(-/-) mice. At cellular levels, Sigma1Sigma6(-/-) and Sigma1(-/-) neurons similarly exhibited waving and swelling of the plasma membrane at axon initial segments and nodes of Ranvier. By contrast, the levels of ankyrin G and voltage-gated sodium channels at these sites, which are significantly reduced in Sigma1Sigma6(-/-) mice, were substantially recovered in Sigma1(-/-) mice. We conclude that the truncated betaIV-spectrin isoform Sigma6 plays a specific role in clustering voltage-gated sodium channels, whereas it is dispensable for membrane stabilization at axon initial segments and nodes of Ranvier.

摘要

在神经元的轴突起始段和郎飞结处,血影蛋白膜骨架在物理上稳定质膜完整性以及聚集电压门控钠通道以确保动作电位的正常传导方面发挥作用。βIV-血影蛋白是这些部位膜骨架的重要组成部分,它有一个N端截短的异构体Sigma6,其表达水平比全长异构体Sigma1高得多。为了研究βIV-血影蛋白Sigma6的作用,我们构建了Sigma6表达水平正常的Sigma1缺陷小鼠(Sigma1(-/-)小鼠),并将它们的表型与先前构建的同时缺乏Sigma1和Sigma6的小鼠(Sigma1Sigma6(-/-)小鼠)的表型进行比较。在Sigma1Sigma6(-/-)小鼠中观察到的严重神经缺陷,如后腿收缩,在Sigma1(-/-)小鼠中明显改善。在细胞水平上,Sigma1Sigma6(-/-)和Sigma1(-/-)神经元在轴突起始段和郎飞结处同样表现出质膜的波动和肿胀。相比之下,Sigma1Sigma6(-/-)小鼠中这些部位的锚蛋白G和电压门控钠通道水平显著降低,而在Sigma1(-/-)小鼠中则基本恢复。我们得出结论,截短的βIV-血影蛋白异构体Sigma6在聚集电压门控钠通道方面发挥特定作用,而在轴突起始段和郎飞结处的膜稳定中则不是必需的。

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