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1. A RIF1/KAP1-based toggle switch stabilises the identities of the inactive and active X chromosomes during X inactivation

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

3. Rif1-Dependent Regulation of Genome Replication in Mammals

4. Mouse Rif1 is a key regulator of the replication-timing programme in mammalian cells

5. Human Rif1, ortholog of a yeast telomeric protein, is regulated by ATM and 53BP1 and functions in the S-phase checkpoint

6. Division of the Nucleolus and Its Release of CDC14 during Anaphase of Meiosis I Depends on Separase, SPO12, and SLK19

7. Structural and biophysical characterization of murine rif1 C terminus reveals high specificity for DNA cruciform structures

8. Functional Genomics Identifies Monopolin

9. Disjunction of Homologous Chromosomes in Meiosis I Depends on Proteolytic Cleavage of the Meiotic Cohesin Rec8 by Separin

10. ASH1 mRNA localization in yeast involves multiple secondary structural elementsand Ash1 protein translation

11. 53BP1 regulates DSB repair using Rif1 to control 5' end resection

12. Mammalian Rif1 contributes to replication stress survival and homology-directed repair

13. The Rev protein is able to transport to the cytoplasm small nucleolar RNAs containing a Rev binding element

14. A central role for cohesins in sister chromatid cohesion, formation of axial elements, and recombination during yeast meiosis

15. RIF1 and KAP1 differentially regulate the choice of inactive versus active X chromosomes

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