| Literature DB >> 15066121 |
Masahiko Kobayashi1, Atsushi Hirano, Tomoyasu Kumano, Shuang-Lin Xiang, Keiko Mihara, Yasunari Haseda, Osamu Matsui, Hiroko Shimizu, Ken-ichi Yamamoto.
Abstract
The Rad17-replication factor C (Rad17-RFC) and Rad9-Rad1-Hus1 complexes are thought to function in the early phase of cell-cycle checkpoint control as sensors for genome damage and genome replication errors. However, genetic analysis of the functions of these complexes in vertebrates is complicated by the lethality of these gene disruptions in embryonic mouse cells. We disrupted the Rad17 and Rad9 loci by gene targeting in the chicken B lymphocyte line DT40. Rad17-/- and Rad9-/- DT40 cells are viable, and are highly sensitive to UV irradiation, alkylating agents, and DNA replication inhibitors, such as hydroxyurea. We further found that Rad17-/- and Rad9-/- but not ATM-/- cells are defective in S-phase DNA damage checkpoint controls and in the cellular response to stalled DNA replication. These results indicate a critical role for chicken Rad17 and Rad9 in the cellular response to stalled DNA replication and DNA damage.Entities:
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Year: 2004 PMID: 15066121 DOI: 10.1111/j.1356-9597.2004.00728.x
Source DB: PubMed Journal: Genes Cells ISSN: 1356-9597 Impact factor: 1.891