The role of DNA polymerase I in tolerating single-strand breaks generated at clustered DNA damage in Escherichia coli

被引:0
作者
Shikazono, Naoya [1 ]
Akamatsu, Ken [1 ]
机构
[1] Natl Inst Quantum Sci & Technol QST, Kansai Inst Photon Sci, 8-1-7 Umemidai, Kizugawa, Kyoto 6190215, Japan
关键词
Single-strand break; Template-strand preference; DNA polymerase I; Clustered DNA damage; BASE EXCISION-REPAIR; DEOXYRIBONUCLEIC-ACID POLYMERASE; 2 DISTINCT ENZYMES; BIOLOGICAL CONSEQUENCES; PROTEOLYTIC FRAGMENT; MUTATION FREQUENCY; ONE POLYPEPTIDE; LESIONS; EXONUCLEASE; SITE;
D O I
10.1038/s41598-024-69823-4
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Clustered DNA damage, when multiple lesions are generated in close proximity, has various biological consequences, including cell death, chromosome aberrations, and mutations. It is generally perceived as a hallmark of ionizing radiation. The enhanced mutagenic potential of lesions within a cluster has been suggested to result, at least in part, from the selection of the strand with the mutagenic lesion as the preferred template strand, and that this process is relevant to the tolerance of persistent single-strand breaks generated during an attempted repair. Using a plasmid-based assay in Escherichia coli, we examined how the strand bias is affected in mutant strains deficient in different DNA polymerase I activities. Our study revealed that the strand-displacement and 5 '-flap endonuclease activities are required for this process, while 3 '-to-5 ' exonuclease activity is not. We also found the strand template that the mutagenic lesion was located on, whether lagging or leading, had no effect on this strand bias. Our results imply that an unknown pathway operates to repair/tolerate the single-strand break generated at a bi-stranded clustered damage site, and that there exist different backup pathways, depending on which DNA polymerase I activity is compromised.
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页数:13
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