Endosomal mRNA transport coordinates local mitochondrial bioenergetics during polar fungal growth
Postma, J.; Kuenzel, P.; Wegmann, S. U.; Muentjes, K.; Devan, S. K.; Sankaranarayanan, S.; Krueger, S.; Westhoff, P.; Wierckx, N.; Wijlick, L. v.; Feldbruegge, M.
Show abstract
Mitochondrial function relies on the precise spatial coordination of protein synthesis and import. Most mitochondrial proteins are nuclear-encoded and must be supplied across varying intracellular distances. In highly polarized cells such as fungal hyphae and neurons, active long-distance mRNA transport is thought to sustain distal mitochondrial function, but its mechanistic coupling to protein import and organelle physiology is unclear. Here, we demonstrate that endosomal transport of mRNAs encoding mitochondrial proteins orchestrates local bioenergetics in infectious hyphae of Ustilago maydis. Using the subunit Atp3 of electron transport chain Complex V as a model, we uncover that the endosomal mRNA transporter Rrm4 is required for efficient mitochondrial protein import, particularly at growth poles. Loss of Rrm4 leads to defects in mitochondrial import, resulting in altered physiology. We propose that endosome-coupled mRNA transport constitutes a fundamental layer of subcellular mitochondrial homeostasis, with implications extending from fungal pathogenicity to neuronal disease. Significance StatementFungal pathogens depend on efficient polar growth to execute their infection programs. Consequently, their growing cell poles face a massive local demand of energy, which is supplied by mitochondria. Currently, it is unclear how involved proteins of the mitochondrial electron transport chain (ETC) reach these distant organelles. Here, we combine fungal genetics, metabolomics, transcriptomics and minimal invasive live-cell imaging to resolve this spatial challenge in the corn pathogen Ustilago maydis. We discover that long-distance endosomal hitchhiking of mRNAs encoding mitochondrial ETC components is essential to sustain active mitochondria at the expanding pole. Ultimately, this membrane-coupled mRNA trafficking precisely orchestrates subcellular mitochondrial function, disclosing a previously unrecognized Achilles heel for the development of novel fungicides.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Analyses of cell wall synthesis in Clostridioides difficile reveal a diversification in cell division mechanisms in endospore-forming bacteria 95%
- Peroxisomal compartmentalization of amino acid biosynthesis reactions imposes an upper limit on compartment size 95%
- A deterministic, c-di-GMP-dependent genetic program ensures the generation of phenotypically similar, symmetric daughter cells during cytokinesis 95%
Similar papers in this journal
- A dynamic bactofilin cytoskeleton cooperates with an M23 endopeptidase to control bacterial morphogenesis 96%
- Phosphate Starvation Signaling Increases Mitochondrial Membrane Potential through Respiration-independent Mechanisms 95%
- Genome concentration limits cell growth and modulates proteome composition in Escherichia coli 95%
Similar papers in this journal
- Mitotic checkpoint gene expression is tuned by coding sequences 95%
- The Proxitome of Arabidopsis Processing Bodies Reveals a Condensate-Membrane Interface Instructing Actin-Driven Directional Growth 95%
- MitoStores: Chaperone-controlled protein granules store mitochondrial precursors in the cytosol 94%
Similar papers in this journal
Similar papers in this journal
- Regulation of sedimentation rate shapes the evolution of multicellularity in a unicellular relative of animals. 95%
- Optogenetics reveals Cdc42 local activation by scaffold-mediated positive feedback and Ras GTPase 94%
- TORC1 reactivation by pheromone signaling revealed by phosphoproteomics of fission yeast sexual reproduction 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.