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Updated: Dec 18, 2025

Methods to Classify Cytoplasmic Foci as Mammalian Stress Granules
Published on: May 12, 2017
Novel FMRP interaction networks linked to cellular stress
Mohamed S Taha1,2, Fereshteh Haghighi1, Anja Stefanski3
1Institute of Biochemistry and Molecular Biology II, Medical Faculty of the Heinrich Heine University, Düsseldorf, Germany.
Abstract:
Silencing of the fragile X mental retardation 1 (FMR1) gene and consequently lack of synthesis of FMR protein (FMRP) are associated with fragile X syndrome, which is one of the most prevalent inherited intellectual disabilities, with additional roles in increased viral infection, liver disease, and reduced cancer risk. FMRP plays critical roles in chromatin dynamics, RNA binding, mRNA transport, and mRNA translation. However, the underlying molecular mechanisms, including the (sub)cellular FMRP protein networks, remain elusive. Here, we employed affinity pull-down and quantitative LC-MS/MS analyses with FMRP. We identified known and novel candidate FMRP-binding proteins as well as protein complexes. FMRP interacted with 180 proteins, 28 of which interacted with its N terminus. Interaction with the C terminus of FMRP was observed for 102 proteins, and 48 proteins interacted with both termini. This FMRP interactome comprises known FMRP-binding proteins, including the ribosomal proteins FXR1P, NUFIP2, Caprin-1, and numerous novel FMRP candidate interacting proteins that localize to different subcellular compartments, including CARF, LARP1, LEO1, NOG2, G3BP1, NONO, NPM1, SKIP, SND1, SQSTM1, and TRIM28. Our data considerably expand the protein and RNA interaction networks of FMRP, which thereby suggest that, in addition to its known functions, FMRP participates in transcription, RNA metabolism, ribonucleoprotein stress granule formation, translation, DNA damage response, chromatin dynamics, cell cycle regulation, ribosome biogenesis, miRNA biogenesis, and mitochondrial organization. Thus, FMRP seems associated with multiple cellular processes both under normal and cell stress conditions in neuronal as well as non-neuronal cell types, as exemplified by its role in the formation of stress granules.
Insights
Fragile X mental retardation protein (FMRP) interacts with 180 proteins, expanding its known roles. This discovery reveals FMRP
Area of Science:
- Molecular biology
- Genetics
- Neuroscience
Background:
- Fragile X syndrome, a leading inherited intellectual disability, stems from FMR1 gene silencing and FMRP deficiency.
- FMRP is crucial for chromatin dynamics, RNA binding, mRNA transport, and translation.
- The complete FMRP protein network and its subcellular localization remain largely unknown.
Purpose of the Study:
- To identify and characterize the FMRP protein interactome.
- To elucidate the molecular mechanisms underlying FMRP function in various cellular processes.
Main Methods:
- Affinity pull-down assays coupled with quantitative LC-MS/MS analysis were used to identify FMRP-binding proteins.
- Proteins interacting with FMRP's N-terminus, C-terminus, and both termini were specifically analyzed.
Main Results:
- A total of 180 FMRP-interacting proteins were identified, including known partners and novel candidates.
- Key novel interacting proteins identified include LARP1, G3BP1, NONO, and TRIM28, localizing to diverse subcellular compartments.
- FMRP interacts with proteins involved in transcription, RNA metabolism, stress granules, translation, DNA damage, and mitochondrial organization.
Conclusions:
- The FMRP interactome is significantly larger and more complex than previously understood.
- FMRP plays a multifaceted role in cellular processes, extending beyond its established functions, particularly under stress conditions.
- These findings provide a foundation for understanding FMRP's involvement in fragile X syndrome and other cellular functions.
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