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Updated: Feb 5, 2026

Rapid Isolation of the Mitoribosome from HEK Cells
Published on: October 4, 2018
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.
Abstract:
The 1555 A to G substitution in mitochondrial 12S A-site rRNA is associated with maternally transmitted deafness of variable penetrance in the absence of otherwise overt disease. Here, we recapitulate the suggested A1555G-mediated pathomechanism in an experimental model of mitoribosomal mistranslation by directed mutagenesis of mitoribosomal protein MRPS5. We first establish that the ratio of cysteine/methionine incorporation and read-through of mtDNA-encoded MT-CO1 protein constitute reliable measures of mitoribosomal misreading. Next, we demonstrate that human HEK293 cells expressing mutant V336Y MRPS5 show increased mitoribosomal mistranslation. As for immortalized lymphocytes of individuals with the pathogenic A1555G mutation, we find little changes in the transcriptome of mutant V336Y MRPS5 HEK cells, except for a coordinated upregulation of transcripts for cytoplasmic ribosomal proteins. Homozygous knock-in mutant Mrps5 V338Y mice show impaired mitochondrial function and a phenotype composed of enhanced susceptibility to noise-induced hearing damage and anxiety-related behavioral alterations. The experimental data in V338Y mutant mice point to a key role of mitochondrial translation and function in stress-related behavioral and physiological adaptations.
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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