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Publication : DNA damage tumor suppressor genes and genomic instability.

First Author  Motoyama N Year  2004
Journal  Curr Opin Genet Dev Volume  14
Issue  1 Pages  11-6
PubMed ID  15108799 Mgi Jnum  J:90177
Mgi Id  MGI:3042657 Doi  10.1016/j.gde.2003.12.003
Citation  Motoyama N, et al. (2004) DNA damage tumor suppressor genes and genomic instability. Curr Opin Genet Dev 14(1):11-6
abstractText  Disruption of the mechanisms that regulate cell-cycle checkpoints, DNA repair, and apoptosis results in genomic instability and the development of cancer in multicellular organisms. The protein kinases ATM and ATR, as well as their downstream substrates Chk1 and Chk2, are central players in checkpoint activation in response to DNA damage. Histone H2AX, ATRIP, as well as the BRCT-motif-containing molecules 53BP1, MDC1, and BRCA1 function as molecular adapters or mediators in the recruitment of ATM or ATR and their targets to sites of DNA damage. The increased chromosomal instability and tumor susceptibility apparent in mutant mice deficient in both p53 and either histone H2AX or proteins that contribute to the nonhomologous end-joining mechanism of DNA repair indicate that DNA damage checkpoints play a pivotal role in tumor suppression.
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