4.8 Article

The ZGRF1 Helicase Promotes Recombinational Repair of Replication-Blocking DNA Damage in Human Cells

Journal

CELL REPORTS
Volume 32, Issue 1, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2020.107849

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Funding

  1. Danish Council for Independent Research (FSS)
  2. Villum Foundation
  3. Danish National Research Foundation [DNRF115]
  4. Dagmar Marshall Foundation
  5. Novo Nordisk Foundation
  6. National Institutes of Health [R21 ES029513, R21 ES028792, R35 CA241801]

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Replication-blocking DNA lesions are particularly toxic to proliferating cells because they can lead to chromosome mis-segregation if not repaired prior to mitosis. In this study, we report that ZGRF1 null cells accumulate chromosome aberrations following replication perturbation and show sensitivity to two potent replication-blocking anticancer drugs: mitomycin C and camptothecin. Moreover, ZGRF1 null cells are defective in catalyzing DNA damage-induced sister chromatid exchange despite accumulating excessive FANCD2, RAD51, and gamma-H2AX foci upon induction of interstrand DNA crosslinks. Consistent with a direct role in promoting recombinational DNA repair, we show that ZGRF1 is a 5'-to-3' helicase that catalyzes D-loop dissociation and Holliday junction branch migration. Moreover, ZGRF1 physically interacts with RAD51 and stimulates strand exchange catalyzed by RAD51-RAD54. On the basis of these data, we propose that ZGRF1 promotes repair of replication-blocking DNA lesions through stimulation of homologous recombination.

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