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.

ACS Chemical Biology
|September 4, 2019
PubMed

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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