Yamada Rei, Kuba Hiroshi
Department of Cell Physiology, Graduate School of Medicine, Nagoya University Nagoya, Japan.
Front Cell Neurosci. 2016 Oct 25;10:250. doi: 10.3389/fncel.2016.00250. eCollection 2016.
The axon initial segment (AIS) is positioned between the axonal and somato-dendritic compartments and plays a pivotal role in triggering action potentials (APs) and determining neuronal output. It is now widely accepted that structural properties of the AIS, such as length and/or location relative to the soma, change in an activity-dependent manner. This structural plasticity of the AIS is known to be crucial for homeostatic control of neuronal excitability. However, it is obvious that the impact of the AIS on neuronal excitability is critically dependent on the biophysical properties of the AIS, which are primarily determined by the composition and characteristics of ion channels in this domain. Moreover, these properties can be altered via phosphorylation and/or redistribution of the channels. Recently, studies in auditory neurons showed that alterations in the composition of voltage-gated K (Kv) channels at the AIS coincide with elongation of the AIS, thereby enhancing the neuronal excitability, suggesting that the interaction between structural and functional plasticities of the AIS is important in the control of neuronal excitability. In this review, we will summarize the current knowledge regarding structural and functional alterations of the AIS and discuss how they interact and contribute to regulating the neuronal output.
轴突起始段(AIS)位于轴突和胞体-树突区室之间,在触发动作电位(AP)和决定神经元输出方面起着关键作用。现在人们普遍认为,AIS的结构特性,如长度和/或相对于胞体的位置,会以活动依赖的方式发生变化。已知AIS的这种结构可塑性对于神经元兴奋性的稳态控制至关重要。然而,很明显,AIS对神经元兴奋性的影响关键取决于AIS的生物物理特性,而这些特性主要由该区域离子通道的组成和特性决定。此外,这些特性可通过通道的磷酸化和/或重新分布而改变。最近,对听觉神经元的研究表明,AIS处电压门控钾(Kv)通道组成的改变与AIS的延长同时发生,从而增强了神经元的兴奋性,这表明AIS的结构和功能可塑性之间的相互作用在控制神经元兴奋性方面很重要。在这篇综述中,我们将总结关于AIS结构和功能改变的当前知识,并讨论它们如何相互作用以及如何调节神经元输出。