Novobiocin blocks nucleic acid binding to Polθ and inhibits stimulation of its ATPase activity

Author:

Syed Aleem1ORCID,Filandr Frantisek2,Patterson-Fortin Jeffrey1,Bacolla Albino3ORCID,Ravindranathan Ramya1,Zhou Jia1,McDonald Drew T4,Albuhluli Mohammed E5,Verway-Cohen Amy4ORCID,Newman Joseph A6ORCID,Tsai Miaw-Sheue4,Jones Darin E5,Schriemer David C2,D’Andrea Alan D17ORCID,Tainer John A38ORCID

Affiliation:

1. Division of Radiation and Genome Instability, Department of Radiation Oncology, Dana-Farber Cancer Institute, Harvard Medical School , Boston , MA  02215 , USA

2. Department of Biochemistry and Molecular Biology, University of Calgary , Calgary , AB T2N 4N1 , Canada

3. Department of Molecular and Cellular Oncology, Department of Cancer Biology, The University of Texas MD Anderson Cancer Center , Houston , TX  77030 , USA

4. Biological and System Engineering Division, Lawrence Berkeley National Laboratory , Berkeley , CA  94720 , USA

5. Department of Pharmaceutical Sciences, University of Arkansas for Medical Sciences , Little Rock , AR 72205 , USA

6. Center for Medicines Discovery, University of Oxford , OX1 3QU, UK

7. Center for DNA Damage and Repair, Dana-Farber Cancer Institute , Boston , MA  02215 , USA

8. Molecular Biophysics and Integrated Bioimaging, Lawrence Berkeley National Laboratory , Berkeley, CA 94720, USA

Abstract

Abstract Polymerase theta (Polθ) acts in DNA replication and repair, and its inhibition is synthetic lethal in BRCA1 and BRCA2-deficient tumor cells. Novobiocin (NVB) is a first-in-class inhibitor of the Polθ ATPase activity, and it is currently being tested in clinical trials as an anti-cancer drug. Here, we investigated the molecular mechanism of NVB-mediated Polθ inhibition. Using hydrogen deuterium exchange-mass spectrometry (HX-MS), biophysical, biochemical, computational and cellular assays, we found NVB is a non-competitive inhibitor of ATP hydrolysis. NVB sugar group deletion resulted in decreased potency and reduced HX-MS interactions, supporting a specific NVB binding orientation. Collective results revealed that NVB binds to an allosteric site to block DNA binding, both in vitro and in cells. Comparisons of The Cancer Genome Atlas (TCGA) tumors and matched controls implied that POLQ upregulation in tumors stems from its role in replication stress responses to increased cell proliferation: this can now be tested in fifteen tumor types by NVB blocking ssDNA-stimulation of ATPase activity, required for Polθ function at replication forks and DNA damage sites. Structural and functional insights provided in this study suggest a path for developing NVB derivatives with improved potency for Polθ inhibition by targeting ssDNA binding with entropically constrained small molecules.

Funder

National Institutes of Health

National Cancer Institute

Cancer Prevention and Research Institute of Texas

Robert A. Welch Chemistry Chair

Lustgarten Foundation

Breast Cancer Research Foundation

Ludwig Center at Harvard

Publisher

Oxford University Press (OUP)

Subject

Genetics

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