Co-release of GABA and ACh from Medial Olivocochlear Neurons as a Fine Regulatory Mechanism of Cochlear Efferent Inhibition

T Tais Castagnola V Valeria C. Castagna L Lester Torres Cadenas S Siân R. Kitcher (Section on Neuronal Circuitry, NIH, National Institute on Deafness and Other Communication Disorders) M Mariano N. Di Guilmi M María E. Gomez-Casati H Holly J. Beaulac (Section on Neuronal Circuitry, NIH, National Institute on Deafness and Other Communication Disorders) P Paula I. Buonfiglio V Viviana Dalamón E Eleonora Katz (Instituto de Investigaciones en Ingeniería Genética y Biología Molecular, Dr. Héctor N. Torres, Consejo Nacional de Investigaciones Científicas y Técnicas) A Ana Belén Elgoyhen C Catherine J. C. Weisz (Section on Neuronal Circuitry, NIH, National Institute on Deafness and Other Communication Disorders) J Juan D. Goutman C Carolina Wedemeyer (Instituto de Investigaciones en Ingeniería Genética y Biología Molecular, Dr. Héctor N. Torres, Consejo Nacional de Investigaciones Científicas y Técnicas)

Abstract

During development, inner hair cells (IHCs) in the mammalian cochlea are unresponsive to acoustic stimuli but instead exhibit spontaneous activity. During this same period, neurons originating from the medial olivocochlear (MOC) complex transiently innervate IHCs, regulating their firing pattern which is crucial for the correct development of the auditory pathway. Although the MOC-IHC is a cholinergic synapse, previous evidence indicates the widespread presence of gamma-aminobutyric acid (GABA) signaling markers, including presynaptic GABA B receptors (GABA B R). In this study, we explore the source of GABA by optogenetically activating either cholinergic or GABAergic fibers. The optogenetic stimulation of MOC terminals from GAD;ChR2-eYFP and ChAT;ChR2-eYFP mice (of either sex) evoked synaptic currents in IHCs, which were blocked by α-bungarotoxin. This suggests that GABAergic fibers release acetylcholine (ACh) and activate α9α10 nicotinic acetylcholine receptors (nAChRs). Additionally, MOC cholinergic fibers release not only ACh but also GABA, as the effect of GABA on ACh response amplitude was prevented by applying a GABA B R blocker. Using optical neurotransmitter detection and calcium imaging techniques, we examined the extent of GABAergic modulation at the single synapse level. Our findings suggest heterogeneity in GABA modulation, as only 15 out of 31 recorded synaptic sites were modulated by applying the GABA B R specific antagonist, CGP 35348 (100−200 µM). In conclusion, we provide evidence indicating that GABA and ACh are co-released from at least a subset of MOC terminals. In this circuit, GABA functions as a negative feedback mechanism, locally regulating the extent of cholinergic inhibition at certain efferent→IHC synapses during an immature stage.

Article Details

Volume / Issue Vol. 45, Issue 46
Published November 12, 2025
Pages e1653242025
ISSN 0270-6474
Publisher Society for Neuroscience

Journal Info

Journal of Neuroscience

Society for Neuroscience

ISSN: 0270-6474 Life Sciences

Authors (14)

T

Tais Castagnola

V

Valeria C. Castagna

L

Lester Torres Cadenas

S

Siân R. Kitcher

Section on Neuronal Circuitry, NIH, National Institute on Deafness and Other Communication Disorders

M

Mariano N. Di Guilmi

M

María E. Gomez-Casati

H

Holly J. Beaulac

Section on Neuronal Circuitry, NIH, National Institute on Deafness and Other Communication Disorders

P

Paula I. Buonfiglio

V

Viviana Dalamón

E

Eleonora Katz

Instituto de Investigaciones en Ingeniería Genética y Biología Molecular, Dr. Héctor N. Torres, Consejo Nacional de Investigaciones Científicas y Técnicas

A

Ana Belén Elgoyhen

C

Catherine J. C. Weisz

Section on Neuronal Circuitry, NIH, National Institute on Deafness and Other Communication Disorders

J

Juan D. Goutman

C

Carolina Wedemeyer

Instituto de Investigaciones en Ingeniería Genética y Biología Molecular, Dr. Héctor N. Torres, Consejo Nacional de Investigaciones Científicas y Técnicas