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Delayed repair of radiation induced clustered DNA damage: friend or foe?

Abstract:
A signature of ionizing radiation exposure is the induction of DNA clustered damaged sites, defined as two or more lesions within one to two helical turns of DNA by passage of a single radiation track. Clustered damage is made up of double strand breaks (DSB) with associated base lesions or abasic (AP) sites, and non-DSB clusters comprised of base lesions, AP sites and single strand breaks. This review will concentrate on the experimental findings of the processing of non-DSB clustered damaged sites. It has been shown that non-DSB clustered damaged sites compromise the base excision repair pathway leading to the lifetime extension of the lesions within the cluster, compared to isolated lesions, thus the likelihood that the lesions persist to replication and induce mutation is increased. In addition certain non-DSB clustered damaged sites are processed within the cell to form additional DSB. The use of E. coli to demonstrate that clustering of DNA lesions is the major cause of the detrimental consequences of ionizing radiation is also discussed. The delayed repair of non-DSB clustered damaged sites in humans can be seen as a "friend", leading to cell killing in tumour cells or as a "foe", resulting in the formation of mutations and genetic instability in normal tissue.
Publication status:
Published

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Publisher copy:
10.1016/j.mrfmmm.2010.11.003

Authors

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Institution:
University of Oxford
Division:
MSD
Department:
Oncology
Role:
Author


Journal:
Mutation research More from this journal
Volume:
711
Issue:
1-2
Pages:
134-141
Publication date:
2011-06-01
DOI:
EISSN:
1873-135X
ISSN:
0027-5107


Language:
English
Keywords:
Pubs id:
pubs:131196
UUID:
uuid:77be0df0-c338-46af-9a10-5674fef534db
Local pid:
pubs:131196
Source identifiers:
131196
Deposit date:
2012-12-19
ARK identifier:

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