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Al-Khodairy, F. and Carr, A. M (1992). DNA repair mutants defining G2 checkpoint pathways in Schizosaccharomyces pombe. EMBO J 11, 1343-1350.[Medline]

Brown, G. W., Jallepalli, P. V., Huneycutt, B. J. and Kelly, T. V (1997). Interaction of the S phase regulator cdc18 with cyclin-dependent kinase in fission yeast. Proc. Nat. Acad. Sci. USA 94, 6142-6147.[Abstract/Free Full Text]

Correa-Bordes, J. and Nurse, P (1995). p25 rum1 orders S phase and mitosis by acting as an inhibitor of the p34 cdc2 mitotic kinase. Cell 83, 1001-1009.[Medline]

D'Urso, G., Grallert, B. and Nurse, P (1995). DNA polymerase alpha, a component of the replication initiation complex, is essential for the checkpoint coupling S phase to mitosis in fission yeast. J. Cell Sci 108, 3109-3118.[Abstract]

Enoch, T. and Nurse, P (1990). Mutation of fission yeast cell cycle control genes abolishes dependence of mitosis on DNA replication. Cell 60, 665-73.[Medline]

Enoch, T., Gould, K. and Nurse, P (1991). Mitotic checkpoint control in fission yeast. Cold Spring Harbor Symp. Quant. Biol 56, 409-416.[Abstract/Free Full Text]

Enoch, T., Carr, A. and Nurse, P (1992). Fission yeast genes involved in coupling mitosis to completion of DNA replication. Genes Dev 6, 2035-2046.[Abstract/Free Full Text]

Enoch, T. and Norbury, C (1995). Cellular responses to DNA damage: cell-cycle checkpoints, apoptosis and the roles of p53 and ATM. Trends Biochem. Sci 20, 426-430.[Medline]

Fantes, P (1981). Isolation of cell size mutants of a fission yeast by a new selective method: characterisation of mutants and implications for division control mechanisms. J. Bacteriol 146, 746-754.[Abstract/Free Full Text]

Gould, K. L., Moreno, S., Tonks, N. K. and Nurse, P (1990). Complementation of the mitotic activator, p80cdc25, by a human protein-tyrosine phosphatase. Science 250, 1573-6.[Abstract/Free Full Text]

Griffiths, D. J. F., Barbet, N. C., McCready, S., Lehmann, A. R. and Carr, A. M (1995). Fission yeast rad17 ; a homologue of budding yeast RAD24 that shares regions of sequence similarity with DNA polymerase accessory proteins. EMBO J 14, 5812-5823.[Medline]

Hartwell, L. and Weinert, T (1989). Checkpoints: controls that ensure the order of cell cycle events. Science 246, 629-634.[Abstract/Free Full Text]

Hayles, J., Fisher, D., Woollard, A. and Nurse, P (1994). Temporal order of S-phase and mitosis in fission yeast is determined by the state of the p34cdc2/mitotic B cyclin complex. Cell 78, 813-822.[Medline]

Hofmann, J. F. X. and Beach, D (1994). cdt1 is an essential target of the Cdc10/Sct1 transcription factor: requirement for DNA replication and inhibition of mitosis. EMBO J 13, 425-434.[Medline]

Jallepalli, P. V., Brown, G. W., Muzi-Falconi, M., Tien, D. and Kelly, T. J (1997). Regulation of the replication initiator protein p65 cdc18 by CDK phosphorylation. Genes Dev 11, 2767-2779.[Abstract/Free Full Text]

Kelly, T. J., Martin, G. S., Forsburg, S. L., Stephen, R. J., Russo, A. and Nurse, P (1993). The fission yeast cdc18 gene product couples S-phase to start and mitosis. Cell 74, 371-382.[Medline]

Kominami, K. and Toda, T (1997). Fission yeast WD-repeat protein Pop1 regulates genome ploidy through ubuiquitin-proteosome-mediated degradation of the CDK inhibitor Rum1 and the S-phase initiator Cdc18. Genes Dev 11, 1548-1560.[Abstract/Free Full Text]

Kostrub, C. F., Knudsen, K., Subrami, S. and Enoch, T (1998). Hus1p, a conserved fission yeast checkpoint protein, interacts with Rad1p and is phosphorylated in response to DNA damage. EMBO J 17, 2055-2066.[Medline]

Longhese, M. P., Paciotti, V., Fraschini, R., Zaccarini, R., Plevani, P. and Luchinni, G (1997). The novel DNA damage checkpoint protein dcc1p is phosphorylated periodically during the cell cycle and in response to DNA damage in budding yeast. EMBO J 16, 5216-5226.[Medline]

Lopez-Girona, A., Mondesert, O., Leatherwood, J. and Russell, P (1998). Negative regulation of cdc18 DNA replication protein by cdc2. Mol. Biol. Cell 9, 63-73.[Abstract/Free Full Text]

Lundgren, K., Walworth, N., Booher, R., Dembski, M., Kirschner, M. and Beach, D (1991). mik1 and wee1 cooperate in the inhibitory tyrosine phosphorylation of cdc2. Cell 64, 1111-22.[Medline]

Lydall, D. and Weinert, T (1995). Yeast checkpoint genes in DNA damage processing: implications for repair and arrest. Science 270, 1488-1491.[Abstract/Free Full Text]

Maundrell, K (1990). nmt1 of fission yeast: a highly transcribed gene completely repressed by thiamine. J. Biol. Chem 265, 10857-10864.[Abstract/Free Full Text]

Moreno, S., Klar, A. and Nurse, P (1991). Molecular genetic analysis of fission yeast Schizosaccharomyces pombe. Meth. Enzymol 194, 795-23.[Medline]

Moreno, S. and Nurse, P (1994). Regulation of progression through the G1 phase of the cell cycle by the rum1+ gene. Nature 367, 236-242.[Medline]

Nishitani, H. and Nurse, P (1995). p65 cdc18 plays a major role controlling the initiation of DNA replication in fission yeast. Cell 83, 397-405.[Medline]

Rhind, N., Furnari, B. and Russell, P (1997). Cdc2 tyrosine phosphorylation is required for the DNA damage checkpoint in fission yeast. Genes Dev 11, 504-511.[Abstract/Free Full Text]

Rowley, R., Subrami, S. and Young, P. G (1992). Checkpoint controls in Schizosaccharomyces pombe: rad1. EMBO J 11, 1335-1342.[Medline]

Russell, P. and Nurse, P (1986). cdc25+ functions as an inducer in the mitotic control of fission yeast. Cell 45, 145-153.[Medline]

Russell, P. and Nurse, P (1987). Negative regulation of mitosis by wee1+ a gene encoding a protein kinase homolog. Cell 49, 559-567.[Medline]

Saka, Y. and Yanagida, M (1993). Fission yeast cut5+ , required for S phase onset and M phase restraint, is identical to the radiation-damage repair gene rad4+. Cell 74, 383-393.[Medline]

Saka, Y., Fantes, P., Sutani, T., McInerny, C., Creanor, J. and Yanagida, M (1994). Fission yeast cut5 links nuclear chromatin and M phase regulation in the replication checkpoint control. EMBO J 13, 5319-5329.[Medline]

Savitsky, K., Bar-Shira, A., Gilad, S., Rotman, G., Ziv, Y., Vanagaite, L., Tagle, D. A., Smith, S., Uziel, T., Sfez, S. et al (1995). A single Ataxia Telangiectasia gene with a produce similar to PI3-kinase. Science 268, 1749-1753.[Abstract/Free Full Text]

Sazer, S. and Sherwood, S. W (1990). Mitochondrial growth and DNA synthesis occur in the absence of nuclear DNA replication in fission yeast. J. Cell Sci 97, 509-516.[Abstract/Free Full Text]


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