TY - JOUR
T1 - Amino acid changes in Xrs2p, Dun1p, and Rfa2p that remove the preferred targets of the ATM family of protein kinases do not affect DNA repair or telomere length in Saccharomyces cerevisiae
AU - Mallory, Julia C.
AU - Bashkirov, Vladimir I.
AU - Trujillo, Kelly M.
AU - Solinger, Jachen A.
AU - Dominska, Margaret
AU - Sung, Patrick
AU - Heyer, Wolf Dietrich
AU - Petes, Thomas D.
N1 - Funding Information:
We thank R. Craven, S. Elledge, and K. Ritchie for useful discussions, and S. Elledge, R. Rothstein, and S. Brill for strains and plasmids used in our study. The research was supported by National Institutes of Health grants GM52319 (T.P.), GM58015 (W.-D.H.), CA92276 (W.-D.H.), and ES07061 (P.S.). V.I.B. is an International Research Scholar supported by the Howard Hughes Medical Institute. J.C.M. received partial support from a National Institutes of Health Training Grant (5T32 GM07092).
PY - 2003/9/18
Y1 - 2003/9/18
N2 - In eukaryotes, mutations in a number of genes that affect DNA damage checkpoints or DNA replication also affect telomere length [Curr. Opin. Cell Biol. 13 (2001) 281]. Saccharomyces cerevisae strains with mutations in the TEL1 gene (encoding an ATM-like protein kinase) have very short telomeres, as do strains with mutations in XRS2, RAD50, or MRE11 (encoding members of a trimeric complex). Xrs2p and Mre11p are phosphorylated in a Tel1p-dependent manner in response to DNA damage [Genes Dev. 15 (2001) 2238; Mol. Cell 7 (2001) 1255]. We found that Xrs2p, but not Mre11p or Rad50p, is efficiently phosphorylated in vitro by immunopreciptated Tel1p. Strains with mutations eliminating all SQ and TQ motifs in Xrs2p (preferred targets of the ATM kinase family) had wild-type length telomeres and wild-type sensitivity to DNA damaging agents. We also showed that Rfa2p (a subunit of RPA) and the Dun1p checkpoint kinase, which are required for DNA damage repair and which are phosphorylated in response to DNA damage in vivo, are in vitro substrates of the Tel1p and Mec1p kinases. In addition, Dun1p substrates with no SQ or TQ motifs are phosphorylated by Mec1p in vitro very inefficiently, but retain most of their ability to be phosphorylated by Tel1p. We demonstrated that null alleles of DUN1 and certain mutant alleles of RFA2 result in short telomeres. As observed with Xrs2p, however, strains with mutations of DUN1 or RFA2 that eliminate SQ motifs have no effect on telomere length or DNA damage sensitivity.
AB - In eukaryotes, mutations in a number of genes that affect DNA damage checkpoints or DNA replication also affect telomere length [Curr. Opin. Cell Biol. 13 (2001) 281]. Saccharomyces cerevisae strains with mutations in the TEL1 gene (encoding an ATM-like protein kinase) have very short telomeres, as do strains with mutations in XRS2, RAD50, or MRE11 (encoding members of a trimeric complex). Xrs2p and Mre11p are phosphorylated in a Tel1p-dependent manner in response to DNA damage [Genes Dev. 15 (2001) 2238; Mol. Cell 7 (2001) 1255]. We found that Xrs2p, but not Mre11p or Rad50p, is efficiently phosphorylated in vitro by immunopreciptated Tel1p. Strains with mutations eliminating all SQ and TQ motifs in Xrs2p (preferred targets of the ATM kinase family) had wild-type length telomeres and wild-type sensitivity to DNA damaging agents. We also showed that Rfa2p (a subunit of RPA) and the Dun1p checkpoint kinase, which are required for DNA damage repair and which are phosphorylated in response to DNA damage in vivo, are in vitro substrates of the Tel1p and Mec1p kinases. In addition, Dun1p substrates with no SQ or TQ motifs are phosphorylated by Mec1p in vitro very inefficiently, but retain most of their ability to be phosphorylated by Tel1p. We demonstrated that null alleles of DUN1 and certain mutant alleles of RFA2 result in short telomeres. As observed with Xrs2p, however, strains with mutations of DUN1 or RFA2 that eliminate SQ motifs have no effect on telomere length or DNA damage sensitivity.
KW - ATM-related protein kinases
KW - Checkpoints
KW - Dun1p
KW - Rfa2p
KW - Telomeres
KW - Xrs2p
UR - http://www.scopus.com/inward/record.url?scp=0042379940&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=0042379940&partnerID=8YFLogxK
U2 - 10.1016/S1568-7864(03)00115-0
DO - 10.1016/S1568-7864(03)00115-0
M3 - Article
C2 - 12967660
AN - SCOPUS:0042379940
SN - 1568-7864
VL - 2
SP - 1041
EP - 1064
JO - DNA Repair
JF - DNA Repair
IS - 9
ER -