4.8 Article

Chromothripsis and Kataegis Induced by Telomere Crisis

Journal

CELL
Volume 163, Issue 7, Pages 1641-1654

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2015.11.054

Keywords

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Funding

  1. NIH Cancer Center grant [P30 CA008748]
  2. Wellcome Trust [077012/Z/05/Z]
  3. NCI [5R01CA181090]
  4. Breast Cancer Research Foundation
  5. Wellcome Trust Senior Clinical Fellowship [WT088340MA]

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Telomere crisis occurs during tumorigenesis when depletion of the telomere reserve leads to frequent telomere fusions. The resulting dicentric chromosomes have been proposed to drive genome instability. Here, we examine the fate of dicentric human chromosomes in telomere crisis. We observed that dicentric chromosomes invariably persisted through mitosis and developed into 50-200 mm chromatin bridges connecting the daughter cells. Before their resolution at 3-20 hr after anaphase, the chromatin bridges induced nuclear envelope rupture in interphase, accumulated the cytoplasmic 30 nuclease TREX1, and developed RPA-coated single stranded (ss) DNA. CRISPR knockouts showed that TREX1 contributed to the generation of the ssDNA and the resolution of the chromatin bridges. Post-crisis clones showed chromothripsis and kataegis, presumably resulting from DNA repair and APOBEC editing of the fragmented chromatin bridge DNA. We propose that chromothripsis in human cancer may arise through TREX1-mediated fragmentation of dicentric chromosomes formed in telomere crisis.

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