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Updated: Aug 11, 2026

Methods to Classify Cytoplasmic Foci as Mammalian Stress Granules
Published on: May 12, 2017
RNA-associated protein 55 (RAP55) localizes to mRNA processing bodies and stress granules
Wei-Hong Yang1, Jiang Hong Yu, Tod Gulick
1Massachusetts General Hospital-East; CNY 8302, 149 13th Street, Charlestown, Massachusetts 02129, USA.
Abstract:
The mRNA processing body (P-body) is a cellular structure that has an important role in mRNA degradation. P-bodies have also been implicated in RNAi-mediated post-transcriptional gene silencing. The objective of this study was to identify and characterize novel components of the mammalian P-body. Approximately 5% of patients with the autoimmune disease primary biliary cirrhosis have antibodies directed against this structure. Serum from one of these patients was used to identify a cDNA encoding RAP55, a 463-amino acid protein. RAP55 colocalized with previously identified P-body components DCP1a and Ge-1. RAP55 contains an N-terminal Sm-like domain and two C-terminal RGG-rich domains separated by an FDF motif. The two RGG domains and the FDF domain were necessary and sufficient to target the protein to P-bodies. A fragment of RAP55 consisting of the FDF and the second RGG domains did not localize to P-bodies, but was able to displace other P-body components from this structure. After cells were subjected to arsenite-induced stress, RAP55 was detected in TIA-containing stress granules. The second RGG domain was necessary and sufficient for stress granule localization. siRNA-mediated knock-down of RAP55 resulted in loss of P-bodies, suggesting that RAP55 acts prior to the 5'-decapping step in mRNA degradation. The results of this study show that RAP55 is a component of P-bodies in cells at rest and localizes in stress granules in arsenite-treated cells. RAP55 may serve to shuttle mRNAs between P-bodies and stress granules.
Insights
Researchers identified RAP55, a novel protein component of mRNA processing bodies (P-bodies). RAP55 shuttles between P-bodies and stress granules, playing a key role in mRNA degradation and cellular stress responses.
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- mRNA processing bodies (P-bodies) are crucial for mRNA degradation and RNA interference.
- P-bodies are implicated in post-transcriptional gene silencing.
- Primary biliary cirrhosis patients can have antibodies targeting cellular structures.
Purpose of the Study:
- To identify and characterize novel components of mammalian P-bodies.
- To investigate the role of the newly identified protein RAP55 in P-body dynamics.
- To understand RAP55's function in cellular stress conditions.
Main Methods:
- Utilized patient serum from primary biliary cirrhosis to identify RAP55 cDNA.
- Employed immunofluorescence to assess RAP55 colocalization with known P-body markers (DCP1a, Ge-1).
- Performed domain analysis of RAP55 to determine localization signals and used siRNA for functional knockdown studies.
Main Results:
- RAP55 was identified as a novel P-body component, localizing with DCP1a and Ge-1.
- N-terminal Sm-like, two C-terminal RGG-rich domains, and an FDF motif were essential for P-body targeting.
- RAP55 relocated to stress granules under arsenite-induced stress, with the second RGG domain mediating this localization.
- RAP55 knockdown led to P-body loss, indicating its role before the 5'-decapping step in mRNA degradation.
Conclusions:
- RAP55 is a dynamic component of mammalian P-bodies and stress granules.
- RAP55's distinct domains regulate its localization in response to cellular conditions.
- RAP55 likely functions in shuttling mRNAs between P-bodies and stress granules, impacting mRNA fate.
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