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Sequence-specific and Selective Recognition of Double-stranded RNAs over Single-stranded RNAs by Chemically Modified Peptide Nucleic Acids
Published on: September 21, 2017
Double Monoubiquitination Modifies the Molecular Recognition Properties of p15PAF Promoting Binding to the Reader
Amaia González-Magaña1, Alain Ibáñez de Opakua1, Nekane Merino1
1CIC bioGUNE , 48160 Derio , Spain.
Abstract:
The proliferating cell nuclear antigen (PCNA)-associated factor p15PAF is a nuclear protein that acts as a regulator of DNA repair during DNA replication. The p15PAF gene is overexpressed in several types of human cancer, and its function is regulated by monoubiquitination of two lysines (K15 and K24) at the protein N-terminal region. We have previously shown that p15PAF is an intrinsically disordered protein which partially folds upon binding to PCNA and independently contacts DNA through its N-terminal tail. Here we present an NMR conformational characterization of p15PAF monoubiquitinated at both K15 and K24 via a disulfide bridge mimicking the isopeptide bond. We show that doubly monoubiquitinated p15PAF is monomeric, intrinsically disordered, and binds to PCNA as nonubiquitinated p15PAF does but interacts with DNA with reduced affinity. Our SAXS-derived conformational ensemble of doubly monoubiquitinated p15PAF shows that the ubiquitin moieties, separated by eight disordered residues, form transient dimers because of the high local effective ubiquitin concentration. This observation and the sequence similarity with histone H3 N-terminal tail suggest that doubly monoubiquitinated p15PAF is a binding target of DNA methyl transferase Dnmt1, as confirmed by calorimetry. Therefore, doubly monoubiquitinated p15PAF directly interacts with PCNA and recruits Dnmt1 for maintenance of DNA methylation during replication.
Insights
Doubly monoubiquitinated p15PAF interacts with PCNA and DNA, recruiting Dnmt1 for DNA methylation maintenance during replication. This disordered protein
Area of Science:
- Molecular Biology
- Biochemistry
- Structural Biology
Background:
- p15PAF is a nuclear protein regulating DNA repair and replication.
- Its gene is overexpressed in human cancers, with function modulated by monoubiquitination.
- p15PAF is intrinsically disordered, partially folding upon PCNA binding and interacting with DNA via its N-terminal tail.
Purpose of the Study:
- To structurally and functionally characterize doubly monoubiquitinated p15PAF.
- To investigate its interaction with PCNA and DNA.
- To explore its role in DNA methylation maintenance.
Main Methods:
- NMR spectroscopy for conformational characterization.
- SAXS for ensemble determination.
- Isothermal titration calorimetry for binding studies.
Main Results:
- Doubly monoubiquitinated p15PAF is monomeric and intrinsically disordered.
- It binds PCNA similarly to nonubiquitinated p15PAF but shows reduced DNA affinity.
- Ubiquitin moieties form transient dimers, suggesting a role in recruiting Dnmt1.
Conclusions:
- Doubly monoubiquitinated p15PAF directly interacts with PCNA.
- It recruits DNA methyl transferase Dnmt1 for DNA methylation maintenance during replication.
- This provides insights into cancer-related gene regulation and DNA repair mechanisms.
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