On BC1 RNA and the fragile X mental retardation protein
Anna Iacoangeli1, Timofey S Rozhdestvensky, Natalia Dolzhanskaya
1The Robert F. Furchgott Center for Neural and Behavioral Science, Department of Physiology and Pharmacology, State University of New York Health Science Center at Brooklyn, Brooklyn, NY 11203, USA.
Abstract:
The fragile X mental retardation protein (FMRP), the functional absence of which causes fragile X syndrome, is an RNA-binding protein that has been implicated in the regulation of local protein synthesis at the synapse. The mechanism of FMRP's interaction with its target mRNAs, however, has remained controversial. In one model, it has been proposed that BC1 RNA, a small non-protein-coding RNA that localizes to synaptodendritic domains, operates as a requisite adaptor by specifically binding to both FMRP and, via direct base-pairing, to FMRP target mRNAs. Other models posit that FMRP interacts with its target mRNAs directly, i.e., in a BC1-independent manner. Here five laboratories independently set out to test the BC1-FMRP model. We report that specific BC1-FMRP interactions could be documented neither in vitro nor in vivo. Interactions between BC1 RNA and FMRP target mRNAs were determined to be of a nonspecific nature. Significantly, the association of FMRP with bona fide target mRNAs was independent of the presence of BC1 RNA in vivo. The combined experimental evidence is discordant with a proposed scenario in which BC1 RNA acts as a bridge between FMRP and its target mRNAs and rather supports a model in which BC1 RNA and FMRP are translational repressors that operate independently.
Insights
Fragile X mental retardation protein (FMRP) does not require BC1 RNA to bind target mRNAs. This finding challenges the proposed adaptor role of BC1 RNA in FMRP-mediated translational repression.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Fragile X syndrome is caused by the absence of fragile X mental retardation protein (FMRP).
- FMRP is an RNA-binding protein regulating protein synthesis at synapses.
- The interaction mechanism between FMRP, BC1 RNA, and target mRNAs is debated.
Purpose of the Study:
- To investigate the proposed model where BC1 RNA acts as an adaptor between FMRP and its target mRNAs.
- To determine if BC1 RNA is essential for FMRP's interaction with target mRNAs.
Main Methods:
- In vitro and in vivo experiments were conducted across five independent laboratories.
- Assessed specific binding interactions between BC1 RNA and FMRP.
- Evaluated the nature of interactions between BC1 RNA and FMRP target mRNAs.
- Determined FMRP-target mRNA association in the presence and absence of BC1 RNA.
Main Results:
- Specific interactions between BC1 RNA and FMRP were not detected in vitro or in vivo.
- Interactions between BC1 RNA and FMRP target mRNAs were found to be nonspecific.
- FMRP association with its target mRNAs occurred independently of BC1 RNA in vivo.
Conclusions:
- Experimental evidence contradicts the model of BC1 RNA acting as a bridge between FMRP and target mRNAs.
- Findings support an alternative model where BC1 RNA and FMRP function as independent translational repressors.
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