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Noncoding Microdeletion in Mouse Hgf Disrupts Neural Crest Migration into the Stria Vascularis, Reduces the Endocochlear Potential, and Suggests the Neuropathology for Human Nonsyndromic Deafness DFNB39.

Authors :
Morell, Robert J.
Olszewski, Rafal
Tona, Risa
Leitess, Samuel
Wafa, Talah T.
Taukulis, Ian
Schultz, Julie M.
Thomason, Elizabeth J.
Richards, Keri
Whitley, Brittany N.
Hill, Connor
Saunders, Thomas
Starost, Matthew F.
Fitzgerald, Tracy
Wilson, Elizabeth
Takahiro Ohyama
Friedman, Thomas B.
Hoa, Michael
Source :
Journal of Neuroscience; 4/8/2020, Vol. 40 Issue 15, p2976-2992, 17p
Publication Year :
2020

Abstract

Hepatocyte growth factor (HGF) is a multifunctional protein that signals through the MET receptor. HGF stimulates cell proliferation, cell dispersion, neuronal survival, and wound healing. In the inner ear, levels of HGF must be fine-tuned for normal hearing. In mice, a deficiency of HGF expression limited to the auditory system, or an overexpression of HGF, causes neurosensory deafness. In humans, noncoding variants in HGF are associated with nonsyndromic deafness DFNB39. However, the mechanism by which these noncoding variants causes deafness was unknown. Here, we reveal the cause of this deafness using a mouse model engineered with a noncoding intronic 10bp deletion (dellO) in Hgf. Male and female mice homozygous for dellO exhibit moderate-to-profound hearing loss at 4 weeks of age as measured by tone burst auditory brainstem responses. The wild type (WT) 80 mV endocochlear potential was significandy reduced in homozygous dellO mice compared with WT littermates. In normal cochlea, endocochlear potentials are dependent on ion homeostasis mediated by the stria vascularis (SV). Previous studies showed that developmental incorporation of neural crest cells into the SV depends on signaling from HGF/MET. We show by immunohistochemistry that, in dellO homozygotes, neural crest cells fail to infiltrate the developing SV intermediate layer. Phenotyping and RNAseq analyses reveal no other significant abnormalities in other tissues. We conclude that, in the inner ear, the noncoding dellO mutation in Hgf leads to developmental defects of the SV and consequently dysfunctional ion homeostasis and a reduction in the EP, recapitulating human DFNB39 nonsyndromic deafness. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
40
Issue :
15
Database :
Complementary Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
142726557
Full Text :
https://doi.org/10.1523/JNEUROSCI.2278-19.2020