Layer-specific control of inhibition by NDNF interneurons

L Laura Bella Naumann (Institute of Science Technology Austria) L Loreen Hertäg (Modelling of Cognitive Processes) J Jennifer Müller (Institute for Physiology) J Johannes J. Letzkus H Henning Sprekeler

Abstract

Neuronal processing of external sensory input is shaped by internally generated top–down information. In the neocortex, top–down projections primarily target layer 1, which contains NDNF (neuron-derived neurotrophic factor)-expressing interneurons and the dendrites of pyramidal cells. Here, we investigate the hypothesis that NDNF interneurons shape cortical computations in an unconventional, layer-specific way, by exerting presynaptic inhibition on synapses in layer 1 while leaving synapses in deeper layers unaffected. We first confirm experimentally that in the auditory cortex, synapses from somatostatin-expressing (SOM) onto NDNF neurons are indeed modulated by ambient Gamma-aminobutyric acid (GABA). Shifting to a computational model, we then show that this mechanism introduces a distinct mutual inhibition motif between NDNF interneurons and the synaptic outputs of SOM interneurons. This motif can control inhibition in a layer-specific way and introduces competition between NDNF and SOM interneurons for dendritic inhibition onto pyramidal cells on different timescales. NDNF interneurons can thereby control cortical information flow by redistributing dendritic inhibition from fast to slow timescales and by gating different sources of dendritic inhibition.

Article Details

Volume / Issue Vol. 122, Issue 4
Published January 28, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (5)

L

Laura Bella Naumann

Institute of Science Technology Austria

L

Loreen Hertäg

Modelling of Cognitive Processes

J

Jennifer Müller

Institute for Physiology

J

Johannes J. Letzkus

H

Henning Sprekeler