Mouse Rif1 is a regulatory subunit of protein phosphatase 1 (PP1).

Sci Rep

European Molecular Biology Laboratory, Monterotondo Outstation, Adriano Buzzati-Traverso Campus, Via Ramarini 32, 00015, Monterotondo, Italy.

Published: May 2017

AI Article Synopsis

  • Rif1 is a key protein contributing to DNA replication timing, nuclear structure, telomere length, and DNA repair, but its specific functions and interactions are not fully understood.
  • A new protocol was developed to better study Rif1 by identifying novel interactors, particularly focusing on the interaction between Rif1 and PP1, which appears to be crucial and conserved across different systems.
  • Through various scientific methods, researchers found that Rif1 acts as a high-affinity adaptor for PP1, potentially impacting our understanding of Rif1's multiple biological roles and how they are interconnected.

Article Abstract

Rif1 is a conserved protein that plays essential roles in orchestrating DNA replication timing, controlling nuclear architecture, telomere length and DNA repair. However, the relationship between these different roles, as well as the molecular basis of Rif1 function is still unclear. The association of Rif1 with insoluble nuclear lamina has thus far hampered exhaustive characterization of the associated protein complexes. We devised a protocol that overcomes this problem, and were thus able to discover a number of novel Rif1 interactors, involved in chromatin metabolism and phosphorylation. Among them, we focus here on PP1. Data from different systems have suggested that Rif1-PP1 interaction is conserved and has important biological roles. Using mutagenesis, NMR, isothermal calorimetry and surface plasmon resonance we demonstrate that Rif1 is a high-affinity PP1 adaptor, able to out-compete the well-established PP1-inhibitor I2 in vitro. Our conclusions have important implications for understanding Rif1 diverse roles and the relationship between the biological processes controlled by Rif1.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5437018PMC
http://dx.doi.org/10.1038/s41598-017-01910-1DOI Listing

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