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氨基末端和羧基末端在亚型特异性钠通道变异中的作用。

Role of the amino and carboxy termini in isoform-specific sodium channel variation.

作者信息

Lee Annie, Goldin Alan L

机构信息

Department of Microbiology and Molecular Genetics, University of California, Irvine, CA 92697-4025, USA.

出版信息

J Physiol. 2008 Aug 15;586(16):3917-26. doi: 10.1113/jphysiol.2008.156299. Epub 2008 Jun 19.

Abstract

Na(v)1.2 and Na(v)1.6 are two voltage-gated sodium channel isoforms found in adult CNS neurons. These isoforms differ in their electrophysiological properties, even though the major regions that are known to be involved in channel activation and inactivation are conserved between them. To determine if the terminal domains of these channels contributed to their activation and fast inactivation differences, we constructed chimeras between the two isoforms and characterized their electrophysiological properties. Exchanging the N-terminal 205 amino acids of Na(v)1.6 and the corresponding 202 amino acids of Na(v)1.2 completely swapped the V_(1)/(2) of steady-state activation between the Na(v)1.2 and Na(v)1.6 channels in an isoform-specific manner. Exchanging the C-terminal 436 amino acids of Na(v)1.6 and the corresponding region of Na(v)1.2 altered the voltage dependence and kinetics of steady-state inactivation, but the changes did not reflect a direct transfer of inactivation properties between the two isoforms. Finally, the N- and C-terminal domains from Na(v)1.6 demonstrated functional cooperation. These results suggest that the terminal sequences of the sodium channel are important for isoform-specific differences between the channels.

摘要

Na(v)1.2和Na(v)1.6是在成体中枢神经系统神经元中发现的两种电压门控钠通道亚型。尽管已知参与通道激活和失活的主要区域在它们之间是保守的,但这些亚型在其电生理特性上有所不同。为了确定这些通道的末端结构域是否导致了它们在激活和快速失活方面的差异,我们构建了这两种亚型之间的嵌合体并对其电生理特性进行了表征。交换Na(v)1.6的N端205个氨基酸和Na(v)1.2的相应202个氨基酸,以亚型特异性方式完全互换了Na(v)1.2和Na(v)1.6通道之间稳态激活的V_(1)/(2)。交换Na(v)1.6的C端436个氨基酸和Na(v)1.2的相应区域改变了稳态失活的电压依赖性和动力学,但这些变化并未反映出两种亚型之间失活特性的直接转移。最后,来自Na(v)1.6的N端和C端结构域表现出功能协同作用。这些结果表明,钠通道的末端序列对于通道之间亚型特异性差异很重要。

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