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Updated: May 20, 2026

Novel RNA-Binding Proteins Isolation by the RaPID Methodology
Published on: September 30, 2016
Multiple binding of repressed mRNAs by the P-body protein Rck/p54
Michèle Ernoult-Lange1, Sonia Baconnais, Maryannick Harper
1UPMC Univ Paris 06, CNRS-FRE 3402, 75252 Paris cedex 5, France.
Abstract:
Translational repression is achieved by protein complexes that typically bind 3' UTR mRNA motifs and interfere with the formation of the cap-dependent initiation complex, resulting in mRNPs with a closed-loop conformation. We demonstrate here that the human DEAD-box protein Rck/p54, which is a component of such complexes and central to P-body assembly, is in considerable molecular excess with respect to cellular mRNAs and enriched to a concentration of 0.5 mM in P-bodies, where it is organized in clusters. Accordingly, multiple binding of p54 proteins along mRNA molecules was detected in vivo. Consistently, the purified protein bound RNA with no sequence specificity and high nanomolar affinity. Moreover, bound RNA molecules had a relaxed conformation. While RNA binding was ATP independent, relaxing of bound RNA was dependent on ATP, though not on its hydrolysis. We propose that Rck/p54 recruitment by sequence-specific translational repressors leads to further binding of Rck/p54 along mRNA molecules, resulting in their masking, unwinding, and ultimately recruitment to P-bodies. Rck/p54 proteins located at the 5' extremity of mRNA can then recruit the decapping complex, thus coupling translational repression and mRNA degradation.
Insights
The human DEAD-box protein Rck/p54 binds RNA without sequence specificity, promoting translational repression and mRNA decay. This protein, found in P-bodies, helps regulate gene expression by masking and unwinding mRNA molecules.
Area of Science:
- Molecular Biology
- Gene Regulation
- RNA Metabolism
Background:
- Translational repression involves protein complexes binding mRNA 3' UTRs, forming closed-loop mRNPs.
- The DEAD-box protein Rck/p54 is a key component of these complexes and P-body assembly.
Purpose of the Study:
- To investigate the role and mechanism of Rck/p54 in translational repression and mRNA decay.
- To characterize the RNA-binding properties and in vivo behavior of Rck/p54.
Main Methods:
- In vivo detection of Rck/p54 binding to mRNA.
- In vitro RNA binding assays with purified Rck/p54.
- ATP dependence assays for RNA relaxation.
Main Results:
- Rck/p54 is in molecular excess and forms clusters within P-bodies.
- Rck/p54 binds RNA with high nanomolar affinity and no sequence specificity.
- ATP binding, not hydrolysis, is required for Rck/p54 to relax bound RNA.
Conclusions:
- Rck/p54 acts as a translational repressor by binding along mRNA, masking and unwinding it.
- Rck/p54 facilitates mRNA recruitment to P-bodies and subsequent decapping, linking repression and degradation.
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