|  Help  |  About  |  Contact Us

Publication : DNA breaks and chromosomal aberrations arise when replication meets base excision repair.

First Author  Ensminger M Year  2014
Journal  J Cell Biol Volume  206
Issue  1 Pages  29-43
PubMed ID  24982429 Mgi Jnum  J:216998
Mgi Id  MGI:5612904 Doi  10.1083/jcb.201312078
Citation  Ensminger M, et al. (2014) DNA breaks and chromosomal aberrations arise when replication meets base excision repair. J Cell Biol 206(1):29-43
abstractText  Exposures that methylate DNA potently induce DNA double-strand breaks (DSBs) and chromosomal aberrations, which are thought to arise when damaged bases block DNA replication. Here, we demonstrate that DNA methylation damage causes DSB formation when replication interferes with base excision repair (BER), the predominant pathway for repairing methylated bases. We show that cells defective in the N-methylpurine DNA glycosylase, which fail to remove N-methylpurines from DNA and do not initiate BER, display strongly reduced levels of methylation-induced DSBs and chromosomal aberrations compared with wild-type cells. Also, cells unable to generate single-strand breaks (SSBs) at apurinic/apyrimidinic sites do not form DSBs immediately after methylation damage. In contrast, cells deficient in x-ray cross-complementing protein 1, DNA polymerase beta, or poly (ADP-ribose) polymerase 1 activity, all of which fail to seal SSBs induced at apurinic/apyrimidinic sites, exhibit strongly elevated levels of methylation-induced DSBs and chromosomal aberrations. We propose that DSBs and chromosomal aberrations after treatment with N-alkylators arise when replication forks collide with SSBs generated during BER.
Quick Links:
 
Quick Links:
 

Expression

Publication --> Expression annotations

 

Other

3 Bio Entities

0 Expression