Mutant MRPS5 affects mitoribosomal accuracy and confers stress-related behavioral alterations

Rashid Akbergenov1, Stefan Duscha1, Ann-Kristina Fritz2,3

  • 1Institut für Medizinische Mikrobiologie, Universität Zürich, Zürich, Switzerland.

EMBO Reports
|September 22, 2018
PubMed

Insights

The A1555G mutation causes hearing loss by affecting mitochondrial protein production. Researchers modeled this by altering a mitochondrial ribosomal protein, revealing impacts on mitochondrial function and stress responses.

Area of Science:

  • Molecular Biology
  • Genetics
  • Neuroscience

Background:

  • Mitochondrial 12S rRNA A1555G mutation is linked to non-syndromic, maternally inherited hearing loss.
  • The exact pathomechanism of A1555G-associated deafness remains incompletely understood.

Purpose of the Study:

  • To experimentally model the pathomechanism of the A1555G mutation.
  • To investigate the role of mitochondrial translation and function in hearing and behavior.

Main Methods:

  • Directed mutagenesis of mitoribosomal protein MRPS5 in HEK293 cells.
  • Assessing mitoribosomal misreading via cysteine/methionine incorporation and MT-CO1 read-through.
  • Generating and analyzing homozygous knock-in MRPS5 V338Y mutant mice.

Main Results:

  • Mutant V336Y MRPS5 HEK293 cells exhibited increased mitoribosomal mistranslation.
  • Transcriptomic analysis showed upregulation of cytoplasmic ribosomal proteins in mutant cells.
  • MRPS5 V338Y mutant mice displayed impaired mitochondrial function, heightened susceptibility to noise-induced hearing damage, and anxiety-related behaviors.

Conclusions:

  • Mitochondrial ribosomal protein alterations can recapitulate aspects of A1555G-mediated deafness.
  • Mitochondrial translation and function are critical for auditory and behavioral adaptations to stress.

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