Regulation of RAD53 by the ATM-Like Kinases MEC1 and TEL1 in Yeast Cell Cycle Checkpoint Pathways

Y Sanchez, BA Desany, WJ Jones, Q Liu, B Wang… - Science, 1996 - science.org
Y Sanchez, BA Desany, WJ Jones, Q Liu, B Wang, SJ Elledge
Science, 1996science.org
Mutants of the Saccharomyces cerevisiae ataxia telangiectasia mutated (ATM) homolog
MEC1/SAD3/ESR1 were identified that could live only if the RAD53/SAD1 checkpoint kinase
was overproduced. MEC1 and a structurally related gene, TEL1, have overlapping functions
in response to DNA damage and replication blocks that in mutants can be provided by
overproduction of RAD53. Both MEC1 and TEL1 were found to control phosphorylation of
Rad53p in response to DNA damage. These results indicate that RAD53 is a signal …
Mutants of the Saccharomyces cerevisiae ataxia telangiectasia mutated (ATM) homolog MEC1/SAD3/ESR1 were identified that could live only if the RAD53/SAD1 checkpoint kinase was overproduced. MEC1 and a structurally related gene, TEL1, have overlapping functions in response to DNA damage and replication blocks that in mutants can be provided by overproduction of RAD53. Both MEC1 and TEL1 were found to control phosphorylation of Rad53p in response to DNA damage. These results indicate that RAD53 is a signal transducer in the DNA damage and replication checkpoint pathways and functions downstream of two members of the ATM lipid kinase family. Because several members of this pathway are conserved among eukaryotes, it is likely that a RAD53-related kinase will function downstream of the human ATM gene product and play an important role in the mammalian response to DNA damage.
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