TY - JOUR
T1 - Tox regulates hair cell stereocilia development and Cdh23 expression in mice and zebrafish
AU - Zhang, Jing
AU - Gong, Jie
AU - Zhou, Jing
AU - Zhang, Guiyi
AU - Cao, Shengda
AU - Guo, Siwei
AU - Xiao, Yu
AU - Zhao, Xiaoxu
AU - Li, Wen
AU - Wang, Yuhan
AU - Qiao, Ruifeng
AU - Wang, Min
AU - Liu, Ziyi
AU - Hong, Guodong
AU - Wu, Yunhao
AU - Bi, Xiuli
AU - Tu, Hailong
AU - Shen, Shuyuan
AU - Gao, Jiangang
AU - Liu, Dong
AU - Fu, Xiaolong
N1 - Publisher Copyright:
Copyright © 2026 the Author(s).
PY - 2026/8/25
Y1 - 2026/8/25
N2 - Auditory hair cells (HCs) are critical sensory units for sound detection, and their development requires precise transcriptional regulation. To date, numerous transcription factors crucial for HC development have been characterized; however, the governing regulatory network remains unclear and warrants further investigation. In this study, we identified the transcription factor Tox, which plays a significant role in HC development. Tox is highly expressed in HCs in both zebrafish and mice, and its expression increases along developmental pseudotime, rising after Atoh1 and preceding Myo7a, suggesting a potential role in development. Utilizing Tox mutant models in zebrafish and mice, we found that Tox is essential for HC functional maintenance and stereocilia stability. Through multiomics integrated analysis, we confirmed that Tox directly binds to conserved motifs in the Cdh23 promoter, drives its transcription, and ensures the precise localization of Cdh23 at the tips of stereocilia, thereby playing a key role in maintaining auditory function. In conclusion, our findings indicate that Tox influences HC development by regulating the transcription and translation of Cdh23, enriches the regulatory network of HC development, and may serve as a target for clinical gene therapy for deafness.
AB - Auditory hair cells (HCs) are critical sensory units for sound detection, and their development requires precise transcriptional regulation. To date, numerous transcription factors crucial for HC development have been characterized; however, the governing regulatory network remains unclear and warrants further investigation. In this study, we identified the transcription factor Tox, which plays a significant role in HC development. Tox is highly expressed in HCs in both zebrafish and mice, and its expression increases along developmental pseudotime, rising after Atoh1 and preceding Myo7a, suggesting a potential role in development. Utilizing Tox mutant models in zebrafish and mice, we found that Tox is essential for HC functional maintenance and stereocilia stability. Through multiomics integrated analysis, we confirmed that Tox directly binds to conserved motifs in the Cdh23 promoter, drives its transcription, and ensures the precise localization of Cdh23 at the tips of stereocilia, thereby playing a key role in maintaining auditory function. In conclusion, our findings indicate that Tox influences HC development by regulating the transcription and translation of Cdh23, enriches the regulatory network of HC development, and may serve as a target for clinical gene therapy for deafness.
KW - auditory hair cells
KW - hearing loss
KW - stereocilia damage
KW - Tox
KW - transcriptional regularion
UR - https://www.scopus.com/pages/publications/105047845517
U2 - 10.1073/pnas.2607359123
DO - 10.1073/pnas.2607359123
M3 - Article
C2 - 42627828
AN - SCOPUS:105047845517
SN - 0027-8424
VL - 123
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 34
M1 - e2607359123
ER -