Modulation of Ion Channels in the Axon: Mechanisms and Function

Burke, Kenneth J. and Bender, Kevin J. (2019) Modulation of Ion Channels in the Axon: Mechanisms and Function. Frontiers in Cellular Neuroscience, 13. ISSN 1662-5102

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Abstract

The axon is responsible for integrating synaptic signals, generating action potentials (APs), propagating those APs to downstream synapses and converting them into patterns of neurotransmitter vesicle release. This process is mediated by a rich assortment of voltage-gated ion channels whose function can be affected on short and long time scales by activity. Moreover, neuromodulators control the activity of these proteins through G-protein coupled receptor signaling cascades. Here, we review cellular mechanisms and signaling pathways involved in axonal ion channel modulation and examine how changes to ion channel function affect AP initiation, AP propagation, and the release of neurotransmitter. We then examine how these mechanisms could modulate synaptic function by focusing on three key features of synaptic information transmission: synaptic strength, synaptic variability, and short-term plasticity. Viewing these cellular mechanisms of neuromodulation from a functional perspective may assist in extending these findings to theories of neural circuit function and its neuromodulation.

Item Type: Article
Subjects: Open Library Press > Medical Science
Depositing User: Unnamed user with email support@openlibrarypress.com
Date Deposited: 31 May 2023 05:53
Last Modified: 31 May 2023 05:53
URI: https://openlibrarypress.com/id/eprint/1449

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