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Updated: Jun 26, 2026

Dissecting Cell-Autonomous Function of Fragile X Mental Retardation Protein in an Auditory Circuit by In Ovo Electroporation
Published on: July 6, 2022
Phosphorylation of FMRP inhibits association with Dicer
Abstract:
Fragile X syndrome is caused by an absence of the protein product of the fragile X mental retardation gene (FMR1). The fragile X mental retardation protein (FMRP) is an RNA-binding protein that regulates translation of associated mRNAs; however, the mechanism for this regulation remains unknown. Constitutively, phosphorylated FMRP (P-FMRP) is found associated with stalled untranslating polyribosomes, and translation of at least one mRNA is down-regulated when FMRP is phosphorylated. Based on our hypothesis that translational regulation by P-FMRP is accomplished through association with the microRNA (miRNA) pathway, we developed a phospho-specific antibody to P-FMRP and showed that P-FMRP associates with increased amounts of precursor miRNAs (pre-miRNA) compared with total FMRP. Furthermore, P-FMRP does not associate with Dicer or Dicer-containing complexes in coimmunoprecipitation experiments or in an in vitro capture assay using a P-FMRP peptide sequence bound to agarose beads. These data show that Dicer-containing complexes bind FMRP at amino acids 496-503 and that phosphorylation disrupts this association with a consequent increase in association with pre-miRNAs. In sum, we propose that in addition to regulating translation, phosphorylation of FMRP regulates its association with the miRNA pathway by modulating association with Dicer.
Insights
Phosphorylation of fragile X mental retardation protein (FMRP) disrupts its binding to Dicer, increasing its association with precursor microRNAs (pre-miRNAs). This mechanism links FMRP
Area of Science:
- Molecular Biology
- Neuroscience
- Genetics
Background:
- Fragile X syndrome results from the absence of fragile X mental retardation protein (FMRP).
- FMRP, an RNA-binding protein, regulates mRNA translation, but its mechanism is unclear.
- Phosphorylated FMRP (P-FMRP) associates with untranslating polyribosomes, down-regulating mRNA translation.
Discussion:
- This study investigates the hypothesis that P-FMRP regulates translation via the microRNA (miRNA) pathway.
- A phospho-specific antibody revealed P-FMRP binds more precursor miRNAs (pre-miRNAs) than total FMRP.
- P-FMRP does not associate with Dicer or Dicer complexes, indicating a disruption in the miRNA pathway.
Key Insights:
- Dicer complexes bind FMRP at amino acids 496-503.
- Phosphorylation of FMRP disrupts its association with Dicer.
- This disruption leads to increased association of P-FMRP with pre-miRNAs.
Outlook:
- Phosphorylation of FMRP modulates its interaction with the miRNA pathway.
- This provides a novel mechanism for translational regulation in Fragile X syndrome.
- Further research can explore therapeutic targets modulating FMRP phosphorylation and miRNA interactions.
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