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◆ Nature chemical biology2026-09-08

Chemogenomic maps reveal a PRDX1-dependent iron-damage axis in the DNA damage response.

Thomas A O'Loughlin, Abolfazl Arab, Sara Misiukiewicz, Elizabeth Montesano, Christopher Yogodzinski, Ashir A Borah, Valentina Quarantotti, Kevin Lou, Barry S Rosen, Jacob E Corn, Davide Gianni, Shaheen Kabir, Josep V Forment, Luke A Gilbert

原始摘要(英文原文)· Original abstract
The DNA damage response (DDR) is a sophisticated network of cellular pathways whose perturbation leads to genome instability and is a key hallmark of oncogenesis. Here, we present data from 32 genome-scale loss-of-function CRISPR interference chemical-genetic screens with inhibitors targeting core constituents of the DDR machinery (PARP, ATR, ATM, DNAPK and WEE1), as both single agents and in combination with poly(ADP-ribose) polymerase inhibitors. These experiments identify >1,000 genes whose perturbation modifies the DDR and provides a rich resource to the DDR community. In addition, this compendium of functional genomics data reveals key principles governing the DDR and highlights a strong chemical-genetic interaction between loss of activity of the peroxiredoxin PRDX1 and all tested DDR inhibitors through a mechanism involving iron availability mediated by an MRGBP-PAX7-IREB2 axis. Our data position PRDX1 as a key suppressor of DNA damage accumulation and potential druggable target in combination with DDR inhibitors.
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Chemogenomic maps reveal a PRDX1-dependent iron-damage axis in the DNA damage response. — 科研速览 Science Skim