info:eu-repo/semantics/article
PARP Activity Fine-tunes the DNA Replication Choreography of Chk1-depleted Cells
Fecha
2021-05-18Registro en:
Calzetta, Nicolás Luis; González Besteiro, Marina Alejandra; Gottifredi, Vanesa; PARP Activity Fine-tunes the DNA Replication Choreography of Chk1-depleted Cells; Academic Press Ltd - Elsevier Science Ltd; Journal of Molecular Biology; 433; 10; 18-5-2021; 1-10
0022-2836
1089-8638
CONICET Digital
CONICET
Autor
Calzetta, Nicolás Luis
González Besteiro, Marina Alejandra
Gottifredi, Vanesa
Resumen
Checkpoint Kinase 1 (Chk1) prevents DNA damage by adjusting the replication choreography in the face of replication stress. Chk1 depletion provokes slow and asymmetrical fork movement, yet the signals governing such changes remain unclear. We sought to investigate whether poly(ADP-ribose) polymerases (PARPs), key players of the DNA damage response, intervene in the DNA replication of Chk1-depleted cells. We demonstrate that PARP inhibition selectively alleviates the reduced fork elongation rates, without relieving fork asymmetry in Chk1-depleted cells. While the contribution of PARPs to fork elongation is not unprecedented, we found that their role in Chk1-depleted cells extends beyond fork movement. PARP-dependent fork deceleration induced mild dormant origin firing upon Chk1 depletion, augmenting the global rates of DNA synthesis. Thus, we have identified PARPs as novel regulators of replication fork dynamics in Chk1-depleted cells.