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Updated: Jun 5, 2026

Methods to Classify Cytoplasmic Foci as Mammalian Stress Granules
Published on: May 12, 2017
Myosin Va is required for P body but not stress granule formation
Andrew J Lindsay1, Mary W McCaffrey
1Department of Biochemistry, Biosciences Institute, University College Cork, Cork, Ireland. Andrew.Lindsay@curie.fr
Abstract:
In the present study we demonstrate an association between mammalian myosin Va and cytoplasmic P bodies, microscopic ribonucleoprotein granules that contain components of the 5'-3' mRNA degradation machinery. Myosin Va colocalizes with several P body markers and its RNAi-mediated knockdown results in the disassembly of P bodies. Overexpression of a dominant-negative mutant of myosin Va reduced the motility of P bodies in living cells. Co-immunoprecipitation experiments demonstrate that myosin Va physically associates with eIF4E, an mRNA binding protein that localizes to P bodies. In contrast, we find that myosin Va does not play a role in stress granule formation. Stress granules are ribonucleoprotein structures that are involved in translational silencing and are spatially, functionally, and compositionally linked to P bodies. Myosin Va is found adjacent to stress granules in stressed cells but displays minimal localization within stress granules, and myosin Va knockdown has no effect on stress granule assembly or disassembly. Combined with recently published reports demonstrating a role for Drosophila and mammalian class V myosins in mRNA transport and the involvement of the yeast myosin V orthologue Myo2p in P body assembly, our results provide further evidence that the class V myosins serve an important role in the transport and turnover of mRNA.
Insights
Mammalian myosin Va associates with cytoplasmic P bodies, which are involved in mRNA degradation. Myosin Va knockdown disassembles P bodies, suggesting a role in mRNA turnover.
Area of Science:
- Molecular Biology
- Cell Biology
Background:
- Cytoplasmic P bodies are key sites for mRNA degradation.
- The role of myosin Va in mRNA metabolism is not fully understood.
Purpose of the Study:
- To investigate the association between mammalian myosin Va and P bodies.
- To determine the function of myosin Va in P body dynamics and mRNA turnover.
Main Methods:
- Immunofluorescence microscopy to assess colocalization.
- RNA interference (RNAi) for myosin Va knockdown.
- Overexpression of dominant-negative myosin Va mutants.
- Co-immunoprecipitation assays.
- Analysis of stress granule formation.
Main Results:
- Myosin Va colocalizes with P body markers.
- Myosin Va knockdown leads to P body disassembly.
- Dominant-negative myosin Va inhibits P body motility.
- Myosin Va physically interacts with eIF4E, an mRNA-binding protein.
- Myosin Va does not play a role in stress granule formation.
Conclusions:
- Mammalian myosin Va is associated with cytoplasmic P bodies and plays a role in their dynamics.
- Myosin Va is implicated in mRNA turnover, likely through its interaction with mRNA-binding proteins.
- Class V myosins are important for mRNA transport and degradation.
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