» Articles » PMID: 7588071

Developing Inner Ear Sensory Neurons Require TrkB and TrkC Receptors for Innervation of Their Peripheral Targets

Overview
Journal Development
Specialty Biology
Date 1995 Oct 1
PMID 7588071
Citations 37
Authors
Affiliations
Soon will be listed here.
Abstract

The trkB and trkC genes are expressed during the formation of the vestibular and auditory system. To elucidate the function of trkB and trkC during this process, we have analysed mice carrying a germline mutation in the tyrosine kinase catalytic domain of these genes. Neuroanatomical analysis of homozygous mutant mice revealed neuronal deficiencies in the vestibular and cochlear ganglia. In trkB (-/-) animals vestibular neurons and a subset of cochlear neurons responsible for the innervation of outer hair cells were drastically reduced. The peripheral targets of the respective neurons showed severe innervation defects. A comparative analysis of ganglia from trkC (-/-) mutants revealed a moderate reduction of vestibular neurons and a specific loss of cochlear neurons innervating inner hair cells. No nerve fibres were detected in the sensory epithelium containing inner hair cells. A developmental study of trkB (-/-) and trkC (-/-) mice showed that some vestibular and cochlear fibres initially reached their peripheral targets but failed to maintain innervation and degenerated. TrkB and TrkC receptors are therefore required for the survival of specific neuronal populations and the maintenance of target innervation in the peripheral sensory system of the inner ear.

Citing Articles

ISL1 and POU4F1 Directly Interact to Regulate the Differentiation and Survival of Inner Ear Sensory Neurons.

Xu M, Li S, Xie X, Guo L, Yu D, Zhuo J J Neurosci. 2024; 44(8).

PMID: 38267260 PMC: 10883659. DOI: 10.1523/JNEUROSCI.1718-23.2024.


The Role of BDNF as a Biomarker in Cognitive and Sensory Neurodegeneration.

Pisani A, Paciello F, Del Vecchio V, Malesci R, De Corso E, Cantone E J Pers Med. 2023; 13(4).

PMID: 37109038 PMC: 10140880. DOI: 10.3390/jpm13040652.


Axon-glia interactions in the ascending auditory system.

Kohrman D, Borges B, Cassinotti L, Ji L, Corfas G Dev Neurobiol. 2021; 81(5):546-567.

PMID: 33561889 PMC: 9004231. DOI: 10.1002/dneu.22813.


miR-124 promotes the neuronal differentiation of mouse inner ear neural stem cells.

Jiang D, Du J, Zhang X, Zhou W, Zong L, Dong C Int J Mol Med. 2016; 38(5):1367-1376.

PMID: 28025992 PMC: 5065304. DOI: 10.3892/ijmm.2016.2751.


BDNF Signaling Promotes Vestibular Compensation by Increasing Neurogenesis and Remodeling the Expression of Potassium-Chloride Cotransporter KCC2 and GABAA Receptor in the Vestibular Nuclei.

Dutheil S, Watabe I, Sadlaoud K, Tonetto A, Tighilet B J Neurosci. 2016; 36(23):6199-212.

PMID: 27277799 PMC: 6604891. DOI: 10.1523/JNEUROSCI.0945-16.2016.