SOX9 and SOX10 control fluid homeostasis in the inner ear for hearing through independent and cooperative mechanisms

Author:

Szeto Irene Y. Y.1ORCID,Chu Daniel K. H.1ORCID,Chen Peikai1ORCID,Chu Ka Chi1ORCID,Au Tiffany Y. K.1ORCID,Leung Keith K. H.1ORCID,Huang Yong-Heng23,Wynn Sarah L.1ORCID,Mak Angel C. Y.1ORCID,Chan Ying-Shing1,Chan Wood Yee4ORCID,Jauch Ralf123ORCID,Fritzsch Bernd56ORCID,Sham Mai Har1ORCID,Lovell-Badge Robin7ORCID,Cheah Kathryn S. E.1ORCID

Affiliation:

1. School of Biomedical Sciences, The University of Hong Kong, Li Ka Shing Faculty of Medicine, Hong Kong, China

2. Genome Regulation Laboratory, CAS Key Laboratory of Regenerative Biology, Joint School of Life Sciences, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China

3. Guangzhou Medical University, Guangzhou 511436, China

4. School of Biomedical Sciences, The Chinese University of Hong Kong, Shatin, Hong Kong, China

5. Department of Biology, College of Arts & Sciences, University of Iowa, Iowa City, IA 52242

6. Department of Otolaryngology, College of Arts & Sciences, University of Iowa, Iowa City, IA 52242

7. Francis Crick Institute, London NW1 1AT, United Kingdom

Abstract

The in vivo mechanisms underlying dominant syndromes caused by mutations in SRY-Box Transcription Factor 9 ( SOX9 ) and SOX10 ( SOXE ) transcription factors, when they either are expressed alone or are coexpressed, are ill-defined. We created a mouse model for the campomelic dysplasia SOX9 Y440X mutation, which truncates the transactivation domain but leaves DNA binding and dimerization intact. Here, we find that SOX9 Y440X causes deafness via distinct mechanisms in the endolymphatic sac (ES)/duct and cochlea. By contrast, conditional heterozygous Sox9 -null mice are normal. During the ES development of Sox9 Y440X/+ heterozygotes, Sox10 and genes important for ionic homeostasis are down-regulated, and there is developmental persistence of progenitors, resulting in fewer mature cells. Sox10 heterozygous null mutants also display persistence of ES/duct progenitors. By contrast, SOX10 retains its expression in the early Sox9 Y440X/+ mutant cochlea. Later, in the postnatal stria vascularis, dominant interference by SOX9 Y440X is implicated in impairing the normal cooperation of SOX9 and SOX10 in repressing the expression of the water channel Aquaporin 3, thereby contributing to endolymphatic hydrops. Our study shows that for a functioning endolymphatic system in the inner ear, SOX9 regulates Sox10 , and depending on the cell type and target gene, it works either independently of or cooperatively with SOX10. SOX9 Y440X can interfere with the activity of both SOXE factors, exerting effects that can be classified as haploinsufficient/hypomorphic or dominant negative depending on the cell/gene context. This model of disruption of transcription factor partnerships may be applicable to congenital deafness, which affects ∼0.3% of newborns, and other syndromic disorders.

Funder

Research Grants Council, University Grants Committee

Jimmy and Emily Tang Professorship

HHS | NIH | National Institute of Dental and Craniofacial Research

National Natural Science Foundation of China

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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