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Mutations in TMEM43 cause autosomal dominant auditory neuropathy spectrum disorder via interaction with connexin-mediated passive conductance channels

Authors :
Min Young Kim
Xianlin Liu
Seungmin Lee
Byung Yoon Choi
Yong Feng
Lingyun Mei
Jin Hee Han
Jayoung Oh
Minwoo Wendy Jang
Moon Woo Seong
Kyu Yup Lee
Zaohua Huang
Dong Ho Woo
Bong Jik Kim
Aida Nourbakhsh
Nayoung K.D. Kim
Hongsheng Chen
Min-A Kim
Eunyoung Yi
C. Justin Lee
Jie Ling
Jae Joon Han
Tai Young Kim
Woong-Yang Park
Kushal Sharma
Mingyu Lee
Xinzhang Cai
Doo-Yi Oh
Un-Kyung Kim
Ja Won Koo
Sang-Yeon Lee
Chufeng He
Ting-Ting Du
Hye-Rim Park
Shushan Sang
Seung Ha Oh
Ah Reum Kim
Zheng-Yi Chen
Susan H. Blanton
Jung-Bum Shin
Soo Jin Oh
Hyun Woo Shin
Xuezhong Liu
Publication Year :
2020
Publisher :
Cold Spring Harbor Laboratory, 2020.

Abstract

Genes that are primarily expressed in cochlear glia-like supporting cells (GLSs) have never been clearly associated with progressive deafness. Herein, we present a novel deafness locus mapped to chromosome 3p25.1 and a new auditory neuropathy spectrum disorder (ANSD) gene TMEM43 mainly expressed in GLSs. We identify p.R372X of TMEM43 by linkage analysis and exome sequencing in two large Asian families. The knock-in (KI) mouse with p.R372X mutation recapitulates a progressive hearing loss with histological abnormalities exclusively in GLSs. Mechanistically, TMEM43 interacts with Cx26 and Cx30 gap junction channels, disrupting the passive conductance current in GLSs in a dominant-negative fashion when the p.R372X mutation is introduced. Based on the mechanistic insights, cochlear implant was performed on two patients and speech discrimination was successfully restored. Our study highlights a pathological role of cochlear GLSs by identifying a novel deafness gene and its causal relationship with ANSD.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........aaa3ddcf6762b103d7c4b96d4cb858bc