- THIS ARTICLE
- Full Text (PDF)
- Alert me when this article is cited
- Alert me if a correction is posted
- SERVICES
- Similar articles in this journal
- Similar articles in PubMed
- Alert me to new issues of the journal
- Download to citation manager
- Reprints & Permissions
- CITING ARTICLES
- Citing Articles via HighWire
- Citing Articles via Google Scholar
- GOOGLE SCHOLAR
- Articles by Hartman, P. S.
- Articles by Mitchell, D. L.
- Search for Related Content
- PUBMED
- PubMed Citation
- Articles by Hartman, P. S.
- Articles by Mitchell, D. L.
Genetics, Vol 122, 379-385, Copyright © 1989
INVESTIGATIONS |
Excision Repair of UV Radiation-Induced DNA Damage in Caenorhabditis elegans
P. S. Hartman, J. Hevelone, V. Dwarakanath and D. L. Mitchell
Department of Biology, Texas Christian University, Fort Worth, Texas 76129
Radioimmunoassays were used to monitor the removal of antibody-binding sites associated with the two major UV radiation-induced DNA photoproducts [cyclobutane dimers and (6-4) photoproducts]. Unlike with cultured human cells, where (6-4) photoproducts are removed more rapidly than cyclobutane dimers, the kinetics of repair were similar for both lesions. Repair capacity in wild type diminished throughout development. The radioimmunoassays were also employed to confirm the absence of photoreactivation in C. elegans. In addition, three radiation-sensitive mutants (rad-1, rad-2, and rad-7) displayed normal repair capacities. An excision defect was much more pronounced in larvae than embryos in the fourth mutant tested (rad-3). This correlates with the hypersensitivity pattern of this mutant and suggests that DNA repair may be developmentally regulated in C. elegans. The mechanism of DNA repair in C. elegans as well as the relationship between the repair of specific photoproducts and UV radiation sensitivity during development are discussed.
This article has been cited by other articles:
![]() |
M. Hyun, J. Lee, K. Lee, A. May, V. A. Bohr, and B. Ahn Longevity and resistance to stress correlate with DNA repair capacity in Caenorhabditis elegans Nucleic Acids Res., March 27, 2008; 36(4): 1380 - 1389. [Abstract] [Full Text] [PDF] |
||||
![]() |
S.-H. Kim, A. H. Holway, S. Wolff, A. Dillin, and W. M. Michael SMK-1/PPH-4.1 mediated silencing of the CHK-1 response to DNA damage in early C. elegans embryos J. Cell Biol., October 8, 2007; 179(1): 41 - 52. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. H. Holway, S.-H. Kim, A. La Volpe, and W. M. Michael Checkpoint silencing during the DNA damage response in Caenorhabditis elegans embryos J. Cell Biol., March 27, 2006; 172(7): 999 - 1008. [Abstract] [Full Text] [PDF] |
||||

