The deacetylase SIRT6 promotes the repair of UV-induced DNA damage by targeting DDB2

Author:

Geng Anke1,Tang Huanyin1,Huang Jin2,Qian Zhen1,Qin Nan1,Yao Yunxia13,Xu Zhu1,Chen Hao4ORCID,Lan Li4,Xie Hongjuan1,Zhang Jian5ORCID,Jiang Ying1,Mao Zhiyong16ORCID

Affiliation:

1. Clinical and Translational Research Center of Shanghai First Maternity & Infant Hospital, Shanghai Key Laboratory of Signaling and Disease Research, Frontier Science Center for Stem Cell Research, School of Life Sciences and Technology, Tongji University, Shanghai 200092, China

2. Key Laboratory of Environmental Pollution Monitoring and Disease Control of Ministry of Education, Guizhou Medical University, Guiyang 550025, China

3. College of Pharmacy, Yanbian University, Yanji 133002, Jilin Province, China

4. University of Pittsburgh Cancer Institute, University of Pittsburgh School of Medicine, Pittsburgh, PA 15213, USA

5. Department of Pathophysiology, Key Laboratory of Cell Differentiation and Apoptosis of Ministry of Education, Shanghai Jiao-Tong University School of Medicine, 200025 Shanghai, China

6. Tsingtao Advanced Research Institute, Tongji University, 67 Yinchuan West Road, Qingdao 266071, China

Abstract

Abstract The NAD+-dependent deacetylase and mono-ADP-ribosyl transferase SIRT6 stabilizes the genome by promoting DNA double strand break repair, thereby acting as a tumor suppressor. However, whether SIRT6 regulates nucleotide excision repair (NER) remains unknown. Here, we showed that SIRT6 was recruited to sites of UV-induced DNA damage and stimulated the repair of UV-induced DNA damage. Mechanistic studies further indicated that SIRT6 interacted with DDB2, the major sensor initiating global genome NER (GG-NER), and that the interaction was enhanced upon UV irradiation. SIRT6 deacetylated DDB2 at two lysine residues, K35 and K77, upon UV stress and then promoted DDB2 ubiquitination and segregation from chromatin, thereby facilitating downstream signaling. In addition, we characterized several SIRT6 mutations derived from melanoma patients. These SIRT6 mutants ablated the stimulatory effect of SIRT6 on NER and destabilized the genome due to (i) partial loss of enzymatic activity (P27S or H50Y), (ii) a nonsense mutation (R150*) or (iii) high turnover rates (G134W). Overall, we demonstrate that SIRT6 promotes NER by deacetylating DDB2, thereby preventing the onset of melanomagenesis.

Funder

Chinese National Program

National Science Foundation of China

Shanghai Municipal Education Commission

Shanghai Education Development Foundation

Program of Shanghai Academic Research Leader

Publisher

Oxford University Press (OUP)

Subject

Genetics

Reference41 articles.

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