MTO1 mediates tissue specificity of OXPHOS defects via tRNA modification and translation optimization, which can be bypassed by dietary intervention

MTO1 通过 tRNA 修饰和翻译优化介导 OXPHOS 缺陷的组织特异性,而饮食干预可以绕过这一缺陷

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作者:Christin Tischner, Annette Hofer, Veronika Wulff, Joanna Stepek, Iulia Dumitru, Lore Becker, Tobias Haack, Laura Kremer, Alexandre N Datta, Wolfgang Sperl, Thomas Floss, Wolfgang Wurst, Zofia Chrzanowska-Lightowlers, Martin Hrabe De Angelis, Thomas Klopstock, Holger Prokisch, Tina Wenz

Abstract

Mitochondrial diseases often exhibit tissue-specific pathologies, but this phenomenon is poorly understood. Here we present regulation of mitochondrial translation by the Mitochondrial Translation Optimization Factor 1, MTO1, as a novel player in this scenario. We demonstrate that MTO1 mediates tRNA modification and controls mitochondrial translation rate in a highly tissue-specific manner associated with tissue-specific OXPHOS defects. Activation of mitochondrial proteases, aberrant translation products, as well as defects in OXPHOS complex assembly observed in MTO1 deficient mice further imply that MTO1 impacts translation fidelity. In our mouse model, MTO1-related OXPHOS deficiency can be bypassed by feeding a ketogenic diet. This therapeutic intervention is independent of the MTO1-mediated tRNA modification and involves balancing of mitochondrial and cellular secondary stress responses. Our results thereby establish mammalian MTO1 as a novel factor in the tissue-specific regulation of OXPHOS and fine tuning of mitochondrial translation accuracy.

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