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Research ArticleConfirmation, Sensory and Motor Systems

State-Dependent Modification of Sensory Sensitivity via Modulation of Backpropagating Action Potentials

Carola Städele, Margaret L. DeMaegd and Wolfgang Stein
eNeuro 13 August 2018, 5 (4) ENEURO.0283-18.2018; https://doi.org/10.1523/ENEURO.0283-18.2018
Carola Städele
1Institute of Neurobiology, Ulm University, Ulm 89069, Germany
2School of Biological Sciences, Illinois State University, Normal, IL 61790
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Margaret L. DeMaegd
2School of Biological Sciences, Illinois State University, Normal, IL 61790
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Wolfgang Stein
2School of Biological Sciences, Illinois State University, Normal, IL 61790
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Abstract

Neuromodulators play a critical role in sensorimotor processing via various actions, including pre- and postsynaptic signal modulation and direct modulation of signal encoding in peripheral dendrites. Here, we present a new mechanism that allows state-dependent modulation of signal encoding in sensory dendrites by neuromodulatory projection neurons. We studied the impact of antidromic action potentials (APs) on stimulus encoding using the anterior gastric receptor (AGR) neuron in the heavily modulated crustacean stomatogastric ganglion (STG). We found that ectopic AP initiation in AGR’s axon trunk is under direct neuromodulatory control by the inferior ventricular (IV) neurons, a pair of descending projection neurons. IV neuron activation elicited a long-lasting decrease in AGR ectopic activity. This modulation was specific to the site of AP initiation and could be mimicked by focal application of the IV neuron co-transmitter histamine. IV neuron actions were diminished after blocking H2 receptors in AGR’s axon trunk, suggesting a direct axonal modulation. This local modulation did not affect the propagation dynamics of en passant APs. However, decreases in ectopic AP frequency prolonged sensory bursts elicited distantly near AGR’s dendrites. This frequency-dependent effect was mediated via the reduction of antidromic APs, and the diminishment of backpropagation into the sensory dendrites. Computational models suggest that invading antidromic APs interact with local ionic conductances, the rate constants of which determine the sign and strength of the frequency-dependent change in sensory sensitivity. Antidromic APs therefore provide descending projection neurons with a means to influence sensory encoding without affecting AP propagation or stimulus transduction.

  • ectopic action potentials
  • neuromodulation
  • sensorimotor
  • sensory control
  • state-dependent plasticity
  • stomatogastric

Footnotes

  • The authors declare no competing financial interests.

  • This work was supported by the German Research Foundation Grant DFG STE 937/9-1, the National Science Foundation Grant NSF IOS 1354932, Illinois State University, and The German Academic Exchange Service (DAAD).

This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.

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eneuro: 5 (4)
eNeuro
Vol. 5, Issue 4
July/August 2018
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State-Dependent Modification of Sensory Sensitivity via Modulation of Backpropagating Action Potentials
Carola Städele, Margaret L. DeMaegd, Wolfgang Stein
eNeuro 13 August 2018, 5 (4) ENEURO.0283-18.2018; DOI: 10.1523/ENEURO.0283-18.2018

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State-Dependent Modification of Sensory Sensitivity via Modulation of Backpropagating Action Potentials
Carola Städele, Margaret L. DeMaegd, Wolfgang Stein
eNeuro 13 August 2018, 5 (4) ENEURO.0283-18.2018; DOI: 10.1523/ENEURO.0283-18.2018
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Keywords

  • ectopic action potentials
  • neuromodulation
  • sensorimotor
  • sensory control
  • state-dependent plasticity
  • stomatogastric

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