Literature DB >> 29107558

ESRP1 Mutations Cause Hearing Loss due to Defects in Alternative Splicing that Disrupt Cochlear Development.

Alex M Rohacek1, Thomas W Bebee2, Richard K Tilton3, Caleb M Radens1, Chris McDermott-Roe2, Natoya Peart2, Maninder Kaur3, Michael Zaykaner3, Benjamin Cieply2, Kiran Musunuru2, Yoseph Barash1, John A Germiller4, Ian D Krantz5, Russ P Carstens6, Douglas J Epstein7.   

Abstract

Alternative splicing contributes to gene expression dynamics in many tissues, yet its role in auditory development remains unclear. We performed whole-exome sequencing in individuals with sensorineural hearing loss (SNHL) and identified pathogenic mutations in Epithelial Splicing-Regulatory Protein 1 (ESRP1). Patient-derived induced pluripotent stem cells showed alternative splicing defects that were restored upon repair of an ESRP1 mutant allele. To determine how ESRP1 mutations cause hearing loss, we evaluated Esrp1-/- mouse embryos and uncovered alterations in cochlear morphogenesis, auditory hair cell differentiation, and cell fate specification. Transcriptome analysis revealed impaired expression and splicing of genes with essential roles in cochlea development and auditory function. Aberrant splicing of Fgfr2 blocked stria vascularis formation due to erroneous ligand usage, which was corrected by reducing Fgf9 gene dosage. These findings implicate mutations in ESRP1 as a cause of SNHL and demonstrate the complex interplay between alternative splicing, inner ear development, and auditory function.
Copyright © 2017 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  ESRP1; Fgf signaling; alternative splicing; cochlear epithelium; hearing loss; inner ear development; stria vascularis

Mesh:

Substances:

Year:  2017        PMID: 29107558      PMCID: PMC5687886          DOI: 10.1016/j.devcel.2017.09.026

Source DB:  PubMed          Journal:  Dev Cell        ISSN: 1534-5807            Impact factor:   12.270


  78 in total

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6.  Endocochlear potential depends on Cl- channels: mechanism underlying deafness in Bartter syndrome IV.

Authors:  Gesa Rickheit; Hannes Maier; Nicola Strenzke; Corina E Andreescu; Chris I De Zeeuw; Adrian Muenscher; Anselm A Zdebik; Thomas J Jentsch
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Review 6.  Expanded Insights Into Mechanisms of Gene Expression and Disease Related Disruptions.

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7.  Small fish, big prospects: using zebrafish to unravel the mechanisms of hereditary hearing loss.

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9.  Alternative Splicing of Cdh23 Exon 68 Is Regulated by RBM24, RBM38, and PTBP1.

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10.  Esrp1-Regulated Splicing of Arhgef11 Isoforms Is Required for Epithelial Tight Junction Integrity.

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