Mutations in MINAR2 encoding membrane integral NOTCH2-associated receptor 2 cause deafness in humans and mice

Author:

Bademci Guney1ORCID,Lachgar-Ruiz María234ORCID,Deokar Mangesh56,Zafeer Mohammad Faraz7ORCID,Abad Clemer7ORCID,Yildirim Baylan Muzeyyen8,Ingham Neil J.2ORCID,Chen Jing2,Sineni Claire J.7,Vadgama Nirmal9,Karakikes Ioannis9ORCID,Guo Shengru7,Duman Duygu10ORCID,Singh Nitu6,Harlalka Gaurav5ORCID,Jain Shirish P.5,Chioza Barry A.11ORCID,Walz Katherina17,Steel Karen P.2ORCID,Nasir Jamal12ORCID,Tekin Mustafa1713ORCID

Affiliation:

1. Dr. John T. Macdonald Foundation Department of Human Genetics, University of Miami Miller School of Medicine, Miami, FL, 33136

2. Wolfson Centre for Age-Related Diseases, King‘s College London, London, SE1 1UL, United Kingdom

3. Servicio de Genética, Hospital Universitario Ramón y Cajal, IRYCIS, 28034 Madrid, Spain

4. Centro de Investigación Biomédica en Red de Enfermedades Raras, 28034 Madrid, Spain

5. Department of Pharmacology, Rajarshi Shahu College of Pharmacy, 443001 Malvihir, Buldana, India

6. Oriental College of Pharmacy and Research, Oriental University, 453555 Indore, Madhya Pradesh, India

7. John P. Hussmann Institute for Human Genomics, University of Miami Miller School of Medicine, Miami, FL 33136

8. Department of Otorhinolaryngology, Faculty of Medicine, Dicle University, Diyarbakir 21200, Turkey

9. Cardiovascular Institute and Department of Cardiothoracic Surgery, Stanford University School of Medicine, Stanford, CA, 94305

10. Department of Audiology, Faculty of Health Sciences, Ankara University, Ankara 06100, Turkey

11. College of Medicine and Health, University of Exeter Medical School, RD&E NHS Foundation Trust, Exeter, EX2 5DW, United Kingdom

12. Molecular Biosciences Research Group, Faculty of Health and Society, University of Northampton, Northhampton, NN1 5PH, United Kingdom

13. Department of Otolaryngology, University of Miami Miller School of Medicine, Miami, FL, 33136

Abstract

Discovery of deafness genes and elucidating their functions have substantially contributed to our understanding of hearing physiology and its pathologies. Here we report on DNA variants in MINAR2 , encoding membrane integral NOTCH2-associated receptor 2, in four families underlying autosomal recessive nonsyndromic deafness. Neurologic evaluation of affected individuals at ages ranging from 4 to 80 y old does not show additional abnormalities. MINAR2 is a recently annotated gene with limited functional understanding. We detected three MINAR2 variants, c.144G > A (p.Trp48*), c.412_419delCGGTTTTG (p.Arg138Valfs*10), and c.393G > T, in 13 individuals with congenital- or prelingual-onset severe-to-profound sensorineural hearing loss (HL). The c.393G > T variant is shown to disrupt a splice donor site. We show that Minar2 is expressed in the mouse inner ear, with the protein localizing mainly in the hair cells, spiral ganglia, the spiral limbus, and the stria vascularis. Mice with loss of function of the Minar2 protein ( Minar2 tm1b/tm1b ) present with rapidly progressive sensorineural HL associated with a reduction in outer hair cell stereocilia in the shortest row and degeneration of hair cells at a later age. We conclude that MINAR2 is essential for hearing in humans and mice and its disruption leads to sensorineural HL. Progressive HL observed in mice and in some affected individuals and as well as relative preservation of hair cells provides an opportunity to interfere with HL using genetic therapies.

Funder

HHS | NIH | National Institute on Deafness and Other Communication Disorders

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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