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4. Enrichment of DNA replication intermediates by EdU pull down.

5. The COMPASS subunit Spp1 protects nascent DNA at the Tus/Ter replication fork barrier by limiting DNA availability to nucleases.

6. The telomerase reverse transcriptase elongates reversed replication forks at telomeric repeats.

7. Short-term molecular consequences of chromosome mis-segregation for genome stability.

8. Enrichment of centromeric DNA from human cells.

9. Purification of mammalian telomeric DNA for single-molecule analysis.

10. Telomere damage induces internal loops that generate telomeric circles.

11. The Response to DNA Damage at Telomeric Repeats and Its Consequences for Telomere Function.

12. Telomere-Internal Double-Strand Breaks Are Repaired by Homologous Recombination and PARP1/Lig3-Dependent End-Joining.

13. Super-resolution fluorescence imaging of telomeres reveals TRF2-dependent T-loop formation.

14. The replication checkpoint protects fork stability by releasing transcribed genes from nuclear pores.

15. Replicon dynamics, dormant origin firing, and terminal fork integrity after double-strand break formation.

16. Top1- and Top2-mediated topological transitions at replication forks ensure fork progression and stability and prevent DNA damage checkpoint activation.

17. Exo1 processes stalled replication forks and counteracts fork reversal in checkpoint-defective cells.

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