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A chromosome folding intermediate at the condensin-to-cohesin transition during telophase.

Kristin Abramo | Anne-Laure Valton | Sergey V Venev | Hakan Ozadam | A Nicole Fox | Job Dekker
Nature cell biology | 2019

Chromosome folding is modulated as cells progress through the cell cycle. During mitosis, condensins fold chromosomes into helical loop arrays. In interphase, the cohesin complex generates loops and topologically associating domains (TADs), while a separate process of compartmentalization drives segregation of active and inactive chromatin. We used synchronized cell cultures to determine how the mitotic chromosome conformation transforms into the interphase state. Using high-throughput chromosome conformation capture (Hi-C) analysis, chromatin binding assays and immunofluorescence, we show that, by telophase, condensin-mediated loops are lost and a transient folding intermediate is formed that is devoid of most loops. By cytokinesis, cohesin-mediated CTCF-CTCF loops and the positions of TADs emerge. Compartment boundaries are also established early, but long-range compartmentalization is a slow process and proceeds for hours after cells enter G1. Our results reveal the kinetics and order of events by which the interphase chromosome state is formed and identify telophase as a critical transition between condensin- and cohesin-driven chromosome folding.

Pubmed ID: 31685986

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Associated grants

  • Agency: NHGRI NIH HHS, United States
    Id: R01 HG003143
  • Agency: NIDDK NIH HHS, United States
    Id: U54 DK107980

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