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The RNA-binding protein TRIM71 is essential for hearing in humans and mice and times auditory sensory organ development

  • Xiao Jun Li
  • , Charles Morgan
  • , Phan Q. Duy
  • , Lale Evsen
  • , Le T. Hao
  • , Roxane Machavoine
  • , Kahina Belhous
  • , Sylvain Ernest
  • , Françoise Denoyelle
  • , Cyril Mignot
  • , Frederic Brioude
  • , Marine Parodi
  • , Lin Li
  • , He Huang
  • , Prathamesh T. Nadar Ponniah
  • , Waldemar Kolanus
  • , Kristopher T. Kahle
  • , Sandrine Marlin
  • , Angelika Doetzlhofer

Research output: Contribution to journalArticlepeer-review

Abstract

The RNA-binding protein TRIM71 is essential for brain development, and recent genetic studies in humans have identified TRIM71 as a risk gene for congenital hydrocephal-us (CH). Here, we show that monoallelic missense mutations in TRIM71 are associated with hearing loss (HL) and inner ear aplasia in humans. Utilizing conditional Trim71 knockout mice carrying a CH and HL-associated mutation, we demonstrate that loss of TRIM71 function during early otic development (embryonic day 9 to 10) causes severe HL. While inner ear morphogenesis occurs normally in Trim71 knockout mice, we find that early otic loss of TRIM71 function disrupts the highly stereotyped timing of cell cycle exit and differentiation within the inner ear auditory sensory organ (cochlea), resulting in the premature formation and innervation of mechanosensory hair cells. Transcriptomic profiling of Trim71-deficient cochlear progenitor cells identifies Inhba and Tgfbr2 as targets of TRIM71 repression, and our analysis of Inhba-Tgfbr1 double knockout mice indicates that TRIM71 maintains hair cell progenitors in a proliferative and undifferentiated state by restricting TGFβ-type signaling. Characterization of hair cells and their associated neurons in adult Trim71 knockout mice revealed reduced presynaptic terminals and neuronal degeneration in the outer hair cell region, providing a basis for the observed hearing deficits in Trim71 knockout mice.

Original languageEnglish (US)
Article numbere2505811122
JournalProceedings of the National Academy of Sciences of the United States of America
Volume122
Issue number36
DOIs
StatePublished - Sep 9 2025

Keywords

  • Trim71
  • auditory
  • developmental timing
  • hair cell differentiation
  • hearing loss

ASJC Scopus subject areas

  • General

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