Published September 1991 | Version v1
Journal article

Does trans-lesion synthesis explain the UV-radiation resistance of DNA synthesis in C.elegans embryos?

  • 1. Texas Christian Univ., Fort Worth, TX (United States). Dept. of Biology

Description

Over 10-fold larger fluences were required to inhibit both DNA synthesis and cell division in wild-type C.elegans embryos as compared with other model systems or C.elegans rad mutants. In addition, unlike in other organisms, the molecular weight of daughter DNA strands was reduced only after large, superlethal fluences. The molecular weight of nascent DNA fragments exceeded the interdimer distance by up to 19-fold, indicating that C.elegans embryos can replicate through non-instructional lesions. This putative trans-lesion synthetic capability may explain the refractory nature of UV-radiation on embryonic DNA synthesis and nuclear division in C.elegans. (author). 42 refs.; 7 figs

Additional details

Publishing Information

Journal Title
Mutation Research. DNA Repair
Journal Volume
255
Journal Issue
2
Series
Mutat. Res., DNA Repair.
Journal Page Range
163-173
ISSN
0921-8777
CODEN
MUREA

Optional Information

Contract/Grant/Project number
Grant AG03161
Notes
Phil Hartman was supported by grants from the TCU-RF and the National Institutes of health.