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钠通道β1亚基定位于兴奋性和抑制性神经元的轴突起始段,且在小鼠大脑中表现出区域异质性。

Sodium channel β1 subunit localizes to axon initial segments of excitatory and inhibitory neurons and shows regional heterogeneity in mouse brain.

作者信息

Wimmer Verena C, Harty Rosemary C, Richards Kay L, Phillips A Marie, Miyazaki Haruko, Nukina Nobuyuki, Petrou Steven

机构信息

Florey Institute of Neuroscience and Mental Health, Victoria, 3010, Australia.

出版信息

J Comp Neurol. 2015 Apr 1;523(5):814-30. doi: 10.1002/cne.23715. Epub 2015 Jan 14.

Abstract

The β1 subunit of voltage-gated sodium channels, Nav β1, plays multiple roles in neurons spanning electrophysiological modulation of sodium channel α subunits to cell adhesion and neurite outgrowth. This study used immunohistochemistry to investigate Nav β1 subneuronal and regional expression. Nav β1 was enriched at axon initial segments (AIS) and nodes of Ranvier. Nav β1 expression at the AIS was detected throughout the brain, predominantly in the hippocampus, cortex, and cerebellum. Despite expression of Nav β1 in both excitatory and inhibitory AIS, it displayed a marked and fine-grained heterogeneity of expression. Such heterogeneity could have important implications for the tuning of single neuronal and regional excitability, especially in view of the fact that Nav β1 coexpressed with Nav 1.1, Nav 1.2, and Nav 1.6 subunits. The disruption of Nav β1 AIS expression by a human epilepsy-causing C121W genetic mutation in Nav β1 was also investigated using a mouse model. AIS expression of Nav β1 was reduced by approximately 50% in mice heterozygous for the C121W mutation and was abolished in homozygotes, suggesting that loss of Nav α subunit modulation by Nav β1 contributes to the mechanism of epileptogenesis in these animals as well as in patients.

摘要

电压门控钠通道的β1亚基(Nav β1)在神经元中发挥多种作用,涵盖对钠通道α亚基的电生理调节、细胞黏附及神经突生长等方面。本研究采用免疫组织化学方法来探究Nav β1在亚神经元及区域的表达情况。Nav β1在轴突起始段(AIS)和郎飞结处富集。在整个大脑中均检测到Nav β1在AIS的表达,主要集中在海马体、皮质和小脑。尽管Nav β1在兴奋性和抑制性AIS中均有表达,但它呈现出明显且精细的表达异质性。鉴于Nav β1与Nav 1.1、Nav 1.2和Nav 1.6亚基共同表达,这种异质性可能对单个神经元及区域兴奋性的调节具有重要意义。还利用小鼠模型研究了Nav β1中导致人类癫痫的C121W基因突变对Nav β1在AIS表达的破坏作用。在C121W突变杂合子小鼠中,Nav β1在AIS的表达降低了约50%,而在纯合子中则完全消失,这表明Nav β1对Nav α亚基调节作用的丧失促成了这些动物以及患者的癫痫发生机制。

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