Variants of LRP2, encoding a multifunctional cell‐surface endocytic receptor, associated with hearing loss and retinal dystrophy

Author:

Faridi Rabia1ORCID,Yousaf Rizwan1ORCID,Gu Shoujun2ORCID,Inagaki Sayaka1ORCID,Turriff Amy E.3ORCID,Pelstring Keith4ORCID,Guan Bin3ORCID,Naik Amelia3ORCID,Griffith Andrew J.5ORCID,Adadey Samuel Mawuli67ORCID,Aboagye Elvis Twumasi67ORCID,Awandare Gordon A.6ORCID,Morell Robert J.8ORCID,Tsilou Ekaterini3ORCID,Noyes Amanda G.9ORCID,Sulmonte Laura A. G.9ORCID,Wonkam Ambroise710ORCID,Schrauwen Isabelle11ORCID,Leal Suzanne M.1112ORCID,Azaiez Hela13ORCID,Brewer Carmen C.5ORCID,Riazuddin Sheikh14ORCID,Hufnagel Robert B.3ORCID,Hoa Michael2ORCID,Zein Wadih M.3ORCID,de Dios J. Karl4ORCID,Friedman Thomas B.1ORCID

Affiliation:

1. Laboratory of Molecular Genetics National Institute on Deafness and Other Communication Disorders (NIDCD), National Institutes of Health (NIH) Bethesda Maryland USA

2. Auditory Development and Restoration Program, NIDCD, NIH Bethesda Maryland USA

3. Ophthalmic Genetics and Visual Function Branch, National Eye Institute, NIH Bethesda Maryland USA

4. Division of Medical Genetics Dayton Children's Hospital Dayton Ohio USA

5. Otolaryngology Branch, NIDCD, NIH Bethesda Maryland USA

6. West African Centre for Cell Biology of Infectious Pathogens (WACCBIP) University of Ghana Accra Ghana

7. Division of Human Genetics, Department of Medicine, Faculty of Health Sciences University of Cape Town Cape Town South Africa

8. Genomics and Computational Biology Core, NIDCD, NIH Bethesda Maryland USA

9. GeneDx, Inc. Gaithersburg Maryland USA

10. McKusick‐Nathans Institute and Department of Genetic Medicine, Johns Hopkins University School of Medicine Baltimore Maryland USA

11. Center for Statistical Genetics, Gertrude H. Sergievsky Center, and the Department of Neurology Columbia University Medical Center New York New York USA

12. Taub Institute for Alzheimer's Disease and the Aging Brain, Columbia University Medical Center New York New York USA

13. Molecular Otolaryngology and Renal Research Laboratories, Department of Otolaryngology Carver College of Medicine, University of Iowa Iowa City Iowa USA

14. Allama Iqbal Medical Research Centre, Jinnah Hospital Complex Lahore Pakistan

Abstract

AbstractHereditary deafness and retinal dystrophy are each genetically heterogenous and clinically variable. Three small unrelated families segregating the combination of deafness and retinal dystrophy were studied by exome sequencing (ES). The proband of Family 1 was found to be compound heterozygous for NM_004525.3: LRP2: c.5005A > G, p.(Asn1669Asp) and c.149C > G, p.(Thr50Ser). In Family 2, two sisters were found to be compound heterozygous for LRP2 variants, p.(Tyr3933Cys) and an experimentally confirmed c.7715 + 3A > T consensus splice‐altering variant. In Family 3, the proband is compound heterozygous for a consensus donor splice site variant LRP2: c.8452_8452 + 1del and p.(Cys3150Tyr). In mouse cochlea, Lrp2 is expressed abundantly in the stria vascularis marginal cells demonstrated by smFISH, single‐cell and single‐nucleus RNAseq, suggesting that a deficiency of LRP2 may compromise the endocochlear potential, which is required for hearing. LRP2 variants have been associated with Donnai–Barrow syndrome and other multisystem pleiotropic phenotypes different from the phenotypes of the four cases reported herein. Our data expand the phenotypic spectrum associated with pathogenic variants in LRP2 warranting their consideration in individuals with a combination of hereditary hearing loss and retinal dystrophy.

Funder

African Academy of Sciences

National Human Genome Research Institute

National Institute on Deafness and Other Communication Disorders

Wellcome Trust

Publisher

Wiley

Subject

Genetics (clinical),Genetics

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