Atonal homolog 7 (ATOH7) loss-of-function mutations in predominant bilateral optic nerve hypoplasia

Author:

Atac David Grubich1ORCID,Koller Samuel1,Hanson James V M2,Feil Silke1,Tiwari Amit1,Bahr Angela1,Baehr Luzy1,Magyar István1,Kottke Raimund3,Gerth-Kahlert Christina2,Berger Wolfgang145

Affiliation:

1. Institute of Medical Molecular Genetics, University of Zurich, 8952 Schlieren, Switzerland

2. Department of Ophthalmology, University Hospital Zurich and University of Zurich, 8091 Zurich, Switzerland

3. Department of Diagnostic Imaging, University Children's Hospital Zurich, 8032 Zurich, Switzerland

4. Zurich Center for Integrative Human Physiology, University of Zurich, 8057 Zurich, Switzerland

5. Neuroscience Center Zurich, University and ETH Zurich, 8057 Zurich, Switzerland

Abstract

Abstract Optic nerve hypoplasia (ONH) is a congenital optic nerve abnormality caused by underdevelopment of retinal ganglion cells (RGCs). Despite being a rare disease, ONH is the most common optic disc anomaly in ophthalmological practice. So far, mutations in several genes have been identified as causative, however many cases of ONH remain without a molecular explanation. The early transcription factor atonal basic-helix-loop-helix (bHLH) transcription factor 7 (ATOH7) is expressed in retinal progenitor cells and has a crucial role in RGC development. Previous studies have identified several mutations in the ATOH7 locus in cases of eye developmental diseases such as nonsyndromic congenital retinal nonattachment and persistent hyperplasia of the primary vitreous. Here we present two siblings with a phenotype predominated by bilateral ONH, with additional features of foveal hypoplasia and distinct vascular abnormalities, where whole-exome sequencing identified two compound heterozygous missense mutations affecting a conserved amino acid residue within the bHLH domain of ATOH7 (NM_145178.3:c.175G>A; p.(Ala59Thr) and c.176C>T; p.(Ala59Val)). ATOH7 expression constructs with patient single nucleotide variants were cloned for functional characterization. Protein analyses revealed decreased protein amounts and significantly enhanced degradation in the presence of E47, a putative bHLH dimerization partner. Protein interaction assays revealed decreased heterodimerization and DNA-binding of ATOH7 variants, resulting in total loss of transcriptional activation of luciferase reporter gene expression. These findings strongly support pathogenicity of the two ATOH7 mutations, one of which is novel. Additionally, this report highlights the possible impact of altered ATOH7 dimerization on protein stability and function.

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology,General Medicine

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