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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/3751
Title: RNA m(6)A methylation regulates the ultraviolet-induced DNA damage response
Authors: Xiang, Yang
Laurent, Benoit
Hsu, Chih-Hung
Nachtergaele, Sigrid
Lu, Zhike
Sheng, Wanqiang
Xu, Chuanyun
Hen, Hao C.
Jian, Ouyang
Wang, Siqing
Ling, Dominic
Hsu, Pang-Hung 
Zou, Lee
Jambhekar, Ashwini
IIe, Chuan
Shi, Yang
Keywords: NUCLEAR-RNA;POLYMERASE-KAPPA;HUMAN-CELLS;POL-KAPPA;N-6-METHYLADENOSINE;REPAIR;N6-METHYLADENOSINE;MOUSE;TRANSCRIPTION;LOCALIZATION
Issue Date: 23-Mar-2017
Publisher: NATURE PUBLISHING GROUP
Journal Volume: 543
Journal Issue: 7646
Start page/Pages: 573-+
Source: NATURE
Abstract: 
Cell proliferation and survival require the faithful maintenance and propagation of genetic information, which are threatened by the ubiquitous sources of DNA damage present intracellularly and in the external environment. A system of DNA repair, called the DNA damage response, detects and repairs damaged DNA and prevents cell division until the repair is complete. Here we report that methylation at the 6 position of adenosine (m(6)A) in RNA is rapidly (within 2 min) and transiently induced at DNA damage sites in response to ultraviolet irradiation. This modification occurs on numerous poly(A)+ transcripts and is regulated by the methyltransferase METTL3 (methyltransferase-like 3) 1 and the demethylase FTO (fat mass and obesity-associated protein) 2. In the absence of METTL3 catalytic activity, cells showed delayed repair of ultraviolet-induced cyclobutane pyrimidine adducts and elevated sensitivity to ultraviolet, demonstrating the importance of m(6)A in the ultraviolet-responsive DNA damage response. Multiple DNA polymerases are involved in the ultraviolet response, some of which resynthesize DNA after the lesion has been excised by the nucleotide excision repair pathway3, while others participate in trans-lesion synthesis to allow replication past damaged lesions in S phase(4). DNA polymerase. (Pol.), which has been implicated in both nucleotide excision repair and trans-lesion synthesis(5,6), required the catalytic activity of METTL3 for immediate localization to ultravioletinduced DNA damage sites. Importantly, Pol. overexpression qualitatively suppressed the cyclobutane pyrimidine removal defect associated with METTL3 loss. Thus, we have uncovered a novel function for RNA m(6)A modification in the ultraviolet-induced DNA damage response, and our findings collectively support a model in which m(6)A RNA serves as a beacon for the selective, rapid recruitment of Pol. to damage sites to facilitate repair and cell survival.
URI: http://scholars.ntou.edu.tw/handle/123456789/3751
ISSN: 0028-0836
DOI: 10.1038/nature21671
Appears in Collections:海洋生物科技學士學位學程(系)
生命科學暨生物科技學系
02 ZERO HUNGER
03 GOOD HEALTH AND WELL-BEING

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