Localization of a DNA repair gene (XRCC5) involved in double-strand-break rejoining to human chromosome 2.
- 15 July 1992
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 89 (14) , 6423-6427
- https://doi.org/10.1073/pnas.89.14.6423
Abstract
Complementation of the repair defect in hamster xrs mutants has been achieved by transfer of human chromosome 2 using the method of microcell-mediated chromosome transfer. The xrs mutants belong to ionizing radiation complementation group 5, are highly sensitive to ionizing radiation, and have an impaired ability to rejoin radiation-induced DNA double-strand breaks. Both phenotypes were corrected by chromosome 2, although the correction of radiation sensitivity was only partial. Complementation was achieved in two members of this complementation group, xrs6 and XR-V15B, derived independently from the CHO and V79 cell lines, respectively. The presence of human chromosome 2 in complemented clones was examined cytogenetically and by PCR analysis with primers directed at a human-specific long interspersed repetitive sequence or chromosome 2-specific genes. Complementation was observed in 25/27 hybrids, one of which contained only the q arm of chromosome 2. The two noncomplementing hybrids were missing segments of chromosome 2. The use of a back-selection system enabled the isolation of clones that had lost the human chromosome and these regained radiation sensitivity. Transfer of several other human chromosomes did not result in complementation of the repair defect in XR-V15B. These data show that the gene defective in xrs cells, XRCC5, which is involved in double-strand break rejoining, is located on human chromosome 2q.Keywords
This publication has 30 references indexed in Scilit:
- Localization of the xeroderma pigmentosum group B-correcting gene ERCC3 to human chromosome 2q21Genomics, 1991
- PCR primers for human chromosomes: Reagents for the rapid analysis of somatic cell hybridsGenomics, 1991
- The genetic basis of resistance to ionising radiation damage in cultured mammalian cellsMutation Research/DNA Repair, 1991
- Genetic analysis of ionising radiation sensitive mutants of cultured mammalian cell linesMutation Research/DNA Repair, 1991
- Development of human chromosome-specific PCR primers for characterization of somatic cell hybridsGenomics, 1991
- Human chromosome 9 can complement UV sensitivity of xeroderma pigmentosum group A cellsMutation Research/DNA Repair, 1990
- Refined mapping of the three DNA repair genes, ERCC1, ERCC2, and XRCC1, on human chromosome 19Cytogenetic and Genome Research, 1989
- Cell Cycle Responses of Two X-ray Sensitive Mutants Defective in DNA RepairInternational Journal of Radiation Biology, 1989
- Assignment of a human DNA-repair gene associated with sister-chromatid exchange to chromosome 19Mutation Research Letters, 1986
- Neutral sucrose gradient sedimentation of very large DNA from Bacillus subtilis: II. Double-strand breaks formed by gamma ray irradiation of the cellsJournal of Molecular Biology, 1973