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Updated: Feb 11, 2026

Author Spotlight: Advanced Single-Molecule Techniques for Investigating Telomeric Protein-DNA Interactions
Published on: August 30, 2024
Genome-wide Control of Heterochromatin Replication by the Telomere Capping Protein TRF2
Aaron Mendez-Bermudez1, Liudmyla Lototska2, Serge Bauwens2
1Shanghai Ruijin Hospital, Shanghai Ruijin Hospital North, Shanghai Jiao Tong University School of Medicine, Université Côte d'Azur, CNRS, Inserm, "Laboratoire International Associé" (LIA) Hematology and Cancer, State Key Laboratory of Medical Genomics, "Pôle Sino-Français de Recherche en Sciences du Vivant et Génomique," Shanghai, P.R. China; Université Côte d'Azur, CNRS, Inserm, IRCAN, Faculty of Medicine Nice, France.
Abstract:
Hard-to-replicate regions of chromosomes (e.g., pericentromeres, centromeres, and telomeres) impede replication fork progression, eventually leading, in the event of replication stress, to chromosome fragility, aging, and cancer. Our knowledge of the mechanisms controlling the stability of these regions is essentially limited to telomeres, where fragility is counteracted by the shelterin proteins. Here we show that the shelterin subunit TRF2 ensures progression of the replication fork through pericentromeric heterochromatin, but not centromeric chromatin. In a process involving its N-terminal basic domain, TRF2 binds to pericentromeric Satellite III sequences during S phase, allowing the recruitment of the G-quadruplex-resolving helicase RTEL1 to facilitate fork progression. We also show that TRF2 is required for the stability of other heterochromatic regions localized throughout the genome, paving the way for future research on heterochromatic replication and its relationship with aging and cancer.
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