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Updated: Jun 13, 2026

Isolation of mRNAs Associated with Yeast Mitochondria to Study Mechanisms of Localized Translation
Published on: March 14, 2014
Microtubule-dependent mRNA transport in fungi
Kathi Zarnack1, Michael Feldbrügge
1Heinrich-Heine-University Düsseldorf, Institute for Microbiology, Universitätsstr. 1/Bldg. 26.12, 40225 Düsseldorf, Germany.
Abstract:
The localization and local translation of mRNAs constitute an important mechanism to promote the correct subcellular targeting of proteins. mRNA localization is mediated by the active transport of mRNPs, large assemblies consisting of mRNAs and associated factors such as RNA-binding proteins. Molecular motors move mRNPs along the actin or microtubule cytoskeleton for short-distance or long-distance trafficking, respectively. In filamentous fungi, microtubule-based long-distance transport of vesicles, which are involved in membrane and cell wall expansion, supports efficient hyphal growth. Recently, we discovered that the microtubule-mediated transport of mRNAs is essential for the fast polar growth of infectious filaments in the corn pathogen Ustilago maydis. Combining in vivo UV cross-linking and RNA live imaging revealed that the RNA-binding protein Rrm4, which constitutes an integral part of the mRNP transport machinery, mediates the transport of distinct mRNAs encoding polarity factors, protein synthesis factors, and mitochondrial proteins. Moreover, our results indicate that microtubule-dependent mRNA transport is evolutionarily conserved from fungi to higher eukaryotes. This raises the exciting possibility of U. maydis as a model system to uncover basic concepts of long-distance mRNA transport.
Insights
The study reveals that microtubule-mediated messenger RNA (mRNA) transport is crucial for the rapid growth of fungal filaments. RNA-binding protein Rrm4 facilitates this transport, essential for cellular functions and evolutionarily conserved.
Area of Science:
- Molecular Biology
- Cell Biology
- Mycology
Background:
- mRNA localization and translation are key for protein targeting.
- Molecular motors transport messenger ribonucleoprotein complexes (mRNPs) along cytoskeletal tracks.
- Microtubule-based transport is vital for filamentous fungal growth.
Purpose of the Study:
- To investigate the role of mRNA transport in the polar growth of Ustilago maydis.
- To identify the factors involved in microtubule-mediated mRNA transport in fungi.
Main Methods:
- In vivo UV cross-linking
- RNA live imaging
- Genetic analysis of RNA-binding proteins
Main Results:
- Microtubule-mediated mRNA transport is essential for fast polar growth in Ustilago maydis.
- The RNA-binding protein Rrm4 mediates the transport of specific mRNAs.
- Transported mRNAs encode polarity factors, protein synthesis factors, and mitochondrial proteins.
- Microtubule-dependent mRNA transport is conserved across eukaryotes.
Conclusions:
- Microtubule-dependent mRNA transport is a fundamental mechanism for cellular growth and function.
- Ustilago maydis serves as a valuable model for studying conserved mRNA transport processes.
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