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August 14, 2024Nature Communications17 citationsOpen Access

Structural basis for a Polθ helicase small-molecule inhibitor revealed by cryo-EM

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FIFumiaki ItoZLZiyuan LiLMLeonid Minakhin

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Abstract

DNA polymerase theta (Polθ) is a DNA helicase-polymerase protein that facilitates DNA repair and is synthetic lethal with homology-directed repair (HDR) factors. Thus, Polθ is a promising precision oncology drug-target in HDR-deficient cancers. Here, we characterize the binding and mechanism of action of a Polθ helicase (Polθ-hel) small-molecule inhibitor (AB25583) using cryo-EM. AB25583 exhibits 6 nM IC50 against Polθ-hel, selectively kills BRCA1/2-deficient cells, and acts synergistically with olaparib in cancer cells harboring pathogenic BRCA1/2 mutations. Cryo-EM uncovers predominantly dimeric Polθ-hel:AB25583 complex structures at 3.0-3.2 Å. The structures reveal a binding-pocket deep inside the helicase central-channel, which underscores the high specificity and potency of AB25583. The cryo-EM structures in conjunction with biochemical data indicate that AB25583 inhibits the ATPase activity of Polθ-hel helicase via an allosteric mechanism. These detailed structural data and insights about AB25583 inhibition pave the way for accelerating drug development targeting Polθ-hel in HDR-deficient cancers. Polθ helicase is crucial for DNA repair and a target for precision medicine for cancer therapy. Here, the authors reveal the mechanism of action of the small-molecule inhibitor AB25583, and show its high specificity and selective killing of BRCA1/2– cancer cells and synergy with olaparib.

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Ito et al. (2024) studied this question.

synapsesocial.com/papers/68e5c449b6db64358755a6ffhttps://doi.org/10.1038/s41467-024-51351-4
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