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Updated: Jun 6, 2026

Novel RNA-Binding Proteins Isolation by the RaPID Methodology
Published on: September 30, 2016
La-related protein 4 binds poly(A), interacts with the poly(A)-binding protein MLLE domain via a variant PAM2w motif,
Ruiqing Yang1, Sergei A Gaidamakov, Jingwei Xie
131 Center Drive, Bldg. 31, Room 2A25, Bethesda, MD 20892-2426, USA.
Abstract:
The conserved RNA binding protein La recognizes UUU-3'OH on its small nuclear RNA ligands and stabilizes them against 3'-end-mediated decay. We report that newly described La-related protein 4 (LARP4) is a factor that can bind poly(A) RNA and interact with poly(A) binding protein (PABP). Yeast two-hybrid analysis and reciprocal immunoprecipitations (IPs) from HeLa cells revealed that LARP4 interacts with RACK1, a 40S ribosome- and mRNA-associated protein. LARP4 cosediments with 40S ribosome subunits and polyribosomes, and its knockdown decreases translation. Mutagenesis of the RNA binding or PABP interaction motifs decrease LARP4 association with polysomes. Several translation and mRNA metabolism-related proteins use a PAM2 sequence containing a critical invariant phenylalanine to make direct contact with the MLLE domain of PABP, and their competition for the MLLE is thought to regulate mRNA homeostasis. Unlike all ∼150 previously analyzed PAM2 sequences, LARP4 contains a variant PAM2 (PAM2w) with tryptophan in place of the phenylalanine. Binding and nuclear magnetic resonance (NMR) studies have shown that a peptide representing LARP4 PAM2w interacts with the MLLE of PABP within the affinity range measured for other PAM2 motif peptides. A cocrystal of PABC bound to LARP4 PAM2w shows tryptophan in the pocket in PABC-MLLE otherwise occupied by phenylalanine. We present evidence that LARP4 expression stimulates luciferase reporter activity by promoting mRNA stability, as shown by mRNA decay analysis of luciferase and cellular mRNAs. We propose that LARP4 activity is integrated with other PAM2 protein activities by PABP as part of mRNA homeostasis.
Insights
La-related protein 4 (LARP4) binds poly(A) RNA and interacts with poly(A) binding protein (PABP), promoting mRNA stability and translation. This protein plays a role in mRNA homeostasis by interacting with PABP through a unique PAM2 motif.
Area of Science:
- Molecular Biology
- RNA Metabolism
- Protein Interactions
Background:
- The La protein is a conserved RNA-binding protein crucial for stabilizing small nuclear RNAs.
- La-related proteins (LARPs) are involved in various aspects of RNA metabolism.
- Poly(A) binding protein (PABP) plays a central role in mRNA polyadenylation, translation, and stability.
Purpose of the Study:
- To investigate the function of La-related protein 4 (LARP4) in RNA metabolism.
- To elucidate the interaction of LARP4 with PABP and its role in translation and mRNA stability.
- To characterize the unique PAM2 motif variant in LARP4 and its binding to PABP.
Main Methods:
- Yeast two-hybrid analysis and reciprocal immunoprecipitations (IPs) to study protein interactions.
- Cosedimentation assays with 40S ribosome subunits and polysomes.
- Mutagenesis of RNA binding and PABP interaction motifs.
- Binding studies and Nuclear Magnetic Resonance (NMR) to analyze LARP4-PABP interaction.
- mRNA decay analysis using luciferase reporters and cellular mRNAs.
Main Results:
- LARP4 binds poly(A) RNA and interacts with PABP and RACK1.
- LARP4 cosediments with 40S ribosomal subunits and polysomes, and its knockdown impairs translation.
- LARP4 contains a variant PAM2 motif (PAM2w) that interacts with the PABP MLLE domain.
- LARP4 expression enhances reporter gene activity by promoting mRNA stability.
Conclusions:
- LARP4 is a novel factor involved in mRNA stability and translation.
- LARP4's unique PAM2w motif facilitates its interaction with PABP, contributing to mRNA homeostasis.
- LARP4 integrates with other PABP-interacting proteins to regulate mRNA metabolism.
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