Telomeres in mitosis: organization and dynamics

Telomeres are specialized chromosomal structures that protect chromosome ends and maintain genome stability. Their organization depends on telomeric DNA repeats, the shelterin complex, accessory factors, and telomerase. While telomere structure and maintenance have been characterized, their dynamics during mammalian mitosis remain incompletely understood. Mitosis involves profound cellular reorganization, including chromatin condensation, spindle formation, and nuclear membrane disassembly and reassembly. Emerging evidence suggests that telomeres participate in these processes and may contribute to proper chromosome segregation and post-mitotic chromatin organization. Studies indicate that telomeric proteins such as TRF1 and TNKS1 interact with centrosomes and spindle components, while telomeres also interface with chromatin and nuclear membrane reassembly factors, including BAF1, LAP2α, and the ESCRT machinery during late mitosis. Defects in these processes or interactions can lead to telomere dysfunction and genomic instability. Understanding telomere dynamics during mitosis is therefore critical for elucidating mechanisms underlying aging, laminopathies, and other telomere-related human diseases.

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Publication Details

Journal
Nucleus
Published
2026-09-18
DOI
https://doi.org/10.1080/19491034.2026.2698214
Primary Topic
Telomeres, Telomerase, and Senescence
Type
article
Field-Weighted Citation Impact
0.00

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article

Telomeres in mitosis: organization and dynamics

Romina Burla, I Saggio, Mattia La Torre, Serena Fabiano
Nucleus
Telomeres, Telomerase, and Senescence
article

Telomeres in mitosis: organization and dynamics

Romina Burla, I Saggio, Mattia La Torre, Serena Fabiano
article en

Abstract

Telomeres are specialized chromosomal structures that protect chromosome ends and maintain genome stability. Their organization depends on telomeric DNA repeats, the shelterin complex, accessory factors, and telomerase. While telomere structure and maintenance have been characterized, their dynamics during mammalian mitosis remain incompletely understood. Mitosis involves profound cellular reorganization, including chromatin condensation, spindle formation, and nuclear membrane disassembly and reassembly. Emerging evidence suggests that telomeres participate in these processes and may contribute to proper chromosome segregation and post-mitotic chromatin organization. Studies indicate that telomeric proteins such as TRF1 and TNKS1 interact with centrosomes and spindle components, while telomeres also interface with chromatin and nuclear membrane reassembly factors, including BAF1, LAP2α, and the ESCRT machinery during late mitosis. Defects in these processes or interactions can lead to telomere dysfunction and genomic instability. Understanding telomere dynamics during mitosis is therefore critical for elucidating mechanisms underlying aging, laminopathies, and other telomere-related human diseases.

NucleusVol. 17(1)
European University of Rome (IT), Istituto Pasteur (IT)
Fondazione AIRC per la ricerca sul cancro ETS, Ministry of Health -Singapore, Ministero della Salute, Istituto Pasteur-Fondazione Cenci Bolognetti, NextGenerationEU
Life in Land
Openalex Percentile: Top 38%
Telomeres, Telomerase, and Senescence
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Telomeres in mitosis: organization and dynamics — Romina Burla, I Saggio, et al. · Nucleus (2026) | TGRS Research Map | TGRS