电压门控钠离子通道的非经典作用。

Noncanonical roles of voltage-gated sodium channels.

机构信息

Department of Neurology, Yale University School of Medicine, New Haven, CT 06520, USA; Center for Neuroscience and Regeneration Research, Veterans Affairs Connecticut Healthcare System, West Haven, CT 06516, USA.

出版信息

Neuron. 2013 Oct 16;80(2):280-91. doi: 10.1016/j.neuron.2013.09.012.

Abstract

The Hodgkin-Huxley formulation, at its 60th anniversary, remains a bastion of neuroscience. Sodium channels Nav1.1-Nav1.3 and Nav1.6-Nav1.9 support electrogenesis in neurons and are often considered "neuronal," whereas Nav1.4 and Nav1.5 drive electrogenesis in skeletal and cardiac muscle. These channels are, however, expressed in cell types that are not considered electrically excitable. Here, we discuss sodium channel expression in diverse nonexcitable cell types, including astrocytes, NG2 cells, microglia, macrophages, and cancer cells, and review evidence of noncanonical roles, including regulation of effector functions such as phagocytosis, motility, Na(+)/K(+)-ATPase activity, and metastatic activity. Armed with powerful techniques for monitoring channel activity and for real-time assessment of [Na(+)]i and [Ca(2+)]i, neuroscientists are poised to expand the understanding of noncanonical roles of sodium channels in healthy and diseased tissues.

摘要

霍奇金-赫胥黎公式诞生 60 周年,至今仍是神经科学的基石。钠通道 Nav1.1-Nav1.3 和 Nav1.6-Nav1.9 支持神经元的电生成,通常被认为是“神经元”,而 Nav1.4 和 Nav1.5 则驱动骨骼肌和心肌的电生成。然而,这些通道在不被认为是电兴奋的细胞类型中表达。在这里,我们讨论了钠通道在多种非兴奋细胞类型中的表达,包括星形胶质细胞、NG2 细胞、小胶质细胞、巨噬细胞和癌细胞,并回顾了非典型作用的证据,包括对效应功能的调节,如吞噬作用、运动性、Na(+)/K(+)-ATP 酶活性和转移性活性。随着监测通道活性以及实时评估 [Na(+)]i 和 [Ca(2+)]i 的强大技术的出现,神经科学家们准备扩大对钠通道在健康和患病组织中的非典型作用的理解。

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