Human voltage-gated Na+ and K+ channel properties underlie sustained fast AP signaling

Publication date

2023-10-13

Authors

Wilbers, René
Metodieva, Verjinia D
Duverdin, Sarah
Heyer, Djai B
Galakhova, Anna A
Mertens, Eline J
Versluis, Tamara D
Baayen, Johannes C
Idema, Sander
Noske, David P

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

Human cortical pyramidal neurons are large, have extensive dendritic trees, and yet have unexpectedly fast input-output properties: Rapid subthreshold synaptic membrane potential changes are reliably encoded in timing of action potentials (APs). Here, we tested whether biophysical properties of voltage-gated sodium (Na+) and potassium (K+) currents in human pyramidal neurons can explain their fast input-output properties. Human Na+ and K+ currents exhibited more depolarized voltage dependence, slower inactivation, and faster recovery from inactivation compared with their mouse counterparts. Computational modeling showed that despite lower Na+ channel densities in human neurons, the biophysical properties of Na+ channels resulted in higher channel availability and contributed to fast AP kinetics stability. Last, human Na+ channel properties also resulted in a larger dynamic range for encoding of subthreshold membrane potential changes. Thus, biophysical adaptations of voltage-gated Na+ and K+ channels enable fast input-output properties of large human pyramidal neurons.

Keywords

Action Potentials/physiology, Animals, Humans, Membrane Potentials/physiology, Mice, Neurons/physiology, Pyramidal Cells/physiology, Sodium, General

Citation

Wilbers, R, Metodieva, V D, Duverdin, S, Heyer, D B, Galakhova, A A, Mertens, E J, Versluis, T D, Baayen, J C, Idema, S, Noske, D P, Verburg, N, Willemse, R B, de Witt Hamer, P C, Kole, M H P, de Kock, C P J, Mansvelder, H D & Goriounova, N A 2023, 'Human voltage-gated Na+ and K+ channel properties underlie sustained fast AP signaling', Science advances, vol. 9, no. 41, eade3300. https://doi.org/10.1126/sciadv.ade3300