Regulation of DNA repair by ubiquitylation
Cellular DNA repair is a frontline system that is responsible for maintaining genome integrity and thus preventing premature aging and cancer by repairing DNA lesions and strand breaks caused by endogenous and exogenous mutagens. However, it is also the principal cellular system in cancer cells that...
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Published in | Biochemistry (Moscow) Vol. 76; no. 1; pp. 69 - 79 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Dordrecht
Dordrecht : SP MAIK Nauka/Interperiodica
2011
SP MAIK Nauka/Interperiodica Springer Springer Nature B.V |
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Abstract | Cellular DNA repair is a frontline system that is responsible for maintaining genome integrity and thus preventing premature aging and cancer by repairing DNA lesions and strand breaks caused by endogenous and exogenous mutagens. However, it is also the principal cellular system in cancer cells that counteracts the killing effect of the major cancer treatments, e.g. chemotherapy and ionizing radiation. Although it is clear that an individual's DNA repair capacity varies, the mechanisms involved in the regulation of repair systems that are responsible for such variations are only just emerging. This knowledge gap is impeding the finding of new cancer therapy targets and the development of novel treatment strategies. In recent years the vital role of post-translational modifications of DNA repair proteins, including ubiquitylation and phosphorylation, has been uncovered. This review will cover recent progress in our understanding of the role of ubiquitylation in the regulation of DNA repair. |
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AbstractList | Cellular DNA repair is a frontline system that is responsible for maintaining genome integrity and thus preventing premature aging and cancer by repairing DNA lesions and strand breaks caused by endogenous and exogenous mutagens. However, it is also the principal cellular system in cancer cells that counteracts the killing effect of the major cancer treatments, e.g. chemotherapy and ionizing radiation. Although it is clear that an individual’s DNA repair capacity varies, the mechanisms involved in the regulation of repair systems that are responsible for such variations are only just emerging. This knowledge gap is impeding the finding of new cancer therapy targets and the development of novel treatment strategies. In recent years the vital role of post-translational modifications of DNA repair proteins, including ubiquitylation and phosphorylation, has been uncovered. This review will cover recent progress in our understanding of the role of ubiquitylation in the regulation of DNA repair. Cellular DNA repair is a frontline system that is responsible for maintaining genome integrity and thus preventing premature aging and cancer by repairing DNA lesions and strand breaks caused by endogenous and exogenous mutagens. However, it is also the principal cellular system in cancer cells that counteracts the killing effect of the major cancer treatments, e.g. chemotherapy and ionizing radiation. Although it is clear that an individual's DNA repair capacity varies, the mechanisms involved in the regulation of repair systems that are responsible for such variations are only just emerging. This knowledge gap is impeding the finding of new cancer therapy targets and the development of novel treatment strategies. In recent years the vital role of post-translational modifications of DNA repair proteins, including ubiquitylation and phosphorylation, has been uncovered. This review will cover recent progress in our understanding of the role of ubiquitylation in the regulation of DNA repair.[PUBLICATION ABSTRACT] Cellular DNA repair is a frontline system that is responsible for maintaining genome integrity and thus preventing premature aging and cancer by repairing DNA lesions and strand breaks caused by endogenous and exogenous mutagens. However, it is also the principal cellular system in cancer cells that counteracts the killing effect of the major cancer treatments, e.g. chemotherapy and ionizing radiation. Although it is clear that an individual's DNA repair capacity varies, the mechanisms involved in the regulation of repair systems that are responsible for such variations are only just emerging. This knowledge gap is impeding the finding of new cancer therapy targets and the development of novel treatment strategies. In recent years the vital role of post-translational modifications of DNA repair proteins, including ubiquitylation and phosphorylation, has been uncovered. This review will cover recent progress in our understanding of the role of ubiquitylation in the regulation of DNA repair. DOI: 10.1134/S0006297911010093 Key words: DNA repair pathways, regulation of DNA repair systems, post- translational protein modification, ubiquitylation |
Audience | Academic |
Author | Meisenberg, C Parsons, J. L Dianov, G. L |
Author_xml | – sequence: 1 fullname: Dianov, G. L – sequence: 2 fullname: Meisenberg, C – sequence: 3 fullname: Parsons, J. L |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/21568841$$D View this record in MEDLINE/PubMed |
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Keywords | post-translational protein modification ubiquitylation regulation of DNA repair systems DNA repair pathways |
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SubjectTerms | Animals Biochemistry Biomedical and Life Sciences Biomedicine Bioorganic Chemistry Cancer Deoxyribonucleic acid DNA DNA Damage DNA Repair Genetic aspects Genomes Glycosylation Humans Ionizing radiation Life Sciences Microbiology Mutagens Neoplasms - genetics Neoplasms - metabolism Neoplasms - therapy Nuclear radiation Post-translational modification Prevention Proteins Review Ubiquitin Ubiquitination |
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Title | Regulation of DNA repair by ubiquitylation |
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