Transcriptomics

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Co-translational regulation of Mmf1 expression depends upon its mitochondrial targeting, ubiquitination of Egd1 by Not4, Caf130 and NGD: MitoENCay


ABSTRACT: The Ccr4-Not complex is a conserved multi protein complex with diverse roles in the mRNA life cycle. Recently we determined that the Not1 and Not4 subunits of Ccr4-Not inversely regulate mRNA solubility and thereby impact dynamics of co-translation events. One mRNA whose solubility is most extremely inversely regulated by Not1 and Not4 is MMF1 encoding a mitochondrial protein that is translated with apparent ribosome pausing. In this work we uncover a mechanism that limits MMF1 overexpression in fermenting yeast and does not require MMF1 5’ or 3’ untranslated sequences but is mediated solely by the MMF1 coding sequence. This mechanism depends upon co-translational targeting of the MMF1 mRNA to the mitochondria, promoted by its mitochondrial targeting sequence, the Egd1 subunit of the NAC complex, the Om14 outer membrane protein and components of the mitochondrial import machinery as well as by Not4. Thereby, levels and translation of the MMF1 mRNA are limited by a mechanism that we have named Mito-ENCay involving ubiquitination of Egd1 by Not4, the Caf130 subunit of the Ccr4-Not complex and RQC. Our results indicate that this mechanism is used for highly expressed mRNAs that depend upon co-translational interactions for appropriate folding, such as ribosomal protein mRNAs in fermenting yeast.

ORGANISM(S): Saccharomyces cerevisiae

PROVIDER: GSE206973 | GEO | 2025/02/13

REPOSITORIES: GEO

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