DNA-PK is activated by SIRT2 deacetylation to promote DNA double-strand break repair by non-homologous end joining

Author:

Head PamelaSara E1,Kapoor-Vazirani Priya1,Nagaraju Ganji P2,Zhang Hui1,Rath Sandip K1,Luong Nho C1,Haji-Seyed-Javadi Ramona1,Sesay Fatmata1,Wang Shi-Ya3,Duong Duc M4,Daddacha Waaqo5ORCID,Minten Elizabeth V1,Song Boying1,Danelia Diana1,Liu Xu4ORCID,Li Shuyi14,Ortlund Eric A4ORCID,Seyfried Nicholas T4,Smalley David M6,Wang Ya1ORCID,Deng Xingming1,Dynan William S14,El-Rayes Bassel2,Davis Anthony J3ORCID,Yu David S1ORCID

Affiliation:

1. Department of Radiation Oncology and Winship Cancer Institute, Emory University School of Medicine, Atlanta , GA 30322, USA

2. School of Medicine, Division of Hematology and Medical Oncology, University of Alabama , Birmingham, AL 35233, USA

3. Department of Radiation Oncology, UT Southwestern Medical School , Dallas , TX 75390 , USA

4. Department of Biochemistry, Emory University School of Medicine , Atlanta , GA 30322, USA

5. Department of Biochemistry and Molecular Biology, Augusta University , Augusta, GA 30912 , USA

6. Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology , Atlanta , GA 30332, USA

Abstract

Abstract DNA-dependent protein kinase (DNA-PK) plays a critical role in non-homologous end joining (NHEJ), the predominant pathway that repairs DNA double-strand breaks (DSB) in response to ionizing radiation (IR) to govern genome integrity. The interaction of the catalytic subunit of DNA-PK (DNA-PKcs) with the Ku70/Ku80 heterodimer on DSBs leads to DNA-PK activation; however, it is not known if upstream signaling events govern this activation. Here, we reveal a regulatory step governing DNA-PK activation by SIRT2 deacetylation, which facilitates DNA-PKcs localization to DSBs and interaction with Ku, thereby promoting DSB repair by NHEJ. SIRT2 deacetylase activity governs cellular resistance to DSB-inducing agents and promotes NHEJ. SIRT2 furthermore interacts with and deacetylates DNA-PKcs in response to IR. SIRT2 deacetylase activity facilitates DNA-PKcs interaction with Ku and localization to DSBs and promotes DNA-PK activation and phosphorylation of downstream NHEJ substrates. Moreover, targeting SIRT2 with AGK2, a SIRT2-specific inhibitor, augments the efficacy of IR in cancer cells and tumors. Our findings define a regulatory step for DNA-PK activation by SIRT2-mediated deacetylation, elucidating a critical upstream signaling event initiating the repair of DSBs by NHEJ. Furthermore, our data suggest that SIRT2 inhibition may be a promising rationale-driven therapeutic strategy for increasing the effectiveness of radiation therapy.

Funder

National Institutes of Health

National Cancer Institute

Department of Defense

DOD Breast Cancer Research Program

Winship Cancer Institute

NIGMS

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference77 articles.

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3. The clinical impact of deficiency in DNA non-homologous end-joining;Woodbine;DNA Repair (Amst.),2014

4. DNA-PK: a dynamic enzyme in a versatile DSB repair pathway;Davis;DNA Repair (Amst.),2014

5. The DNA-dependent protein kinase: a multifunctional protein kinase with roles in DNA double strand break repair and mitosis;Jette;Prog. Biophys. Mol. Biol.,2015

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