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Alphey, L., Jiminez, J., White-Cooper, H., Dawson, L., Nurse, P. and Glover, D (1992). Twine , a cdc25 homolog that functions in the male and female germline of Drosophila. Cell 69, 977-988.[Medline]

Chisholm, J. C (1988). Analysis of the fifth cell cycle of the mouse development. J. Reprod. Fert 84, 29-35.[Abstract]

Chomczynski, P. and Sacchi, N (1987). Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Analyt. Biochem 162, 156-159.[Medline]

Courtot, C., Fankhause, C., Simanis, V. and Lehner, C. F (1992). The Drosophilacdc25 homolog twine is required for meiosis. Development 116, 405-416.[Medline]

Demetric, D. J. and Beach, D. H (1993). Chromosome mapping of human cdc25A and cdc25B phosphatases. Genomics 18, 144-147.[Medline]

Dunphy, W. G. and Kumagai, A (1991). The cdc25 protein contains an intrinsic phosphatase activity. Cell 67, 189-196.[Medline]

Edgar, B. A. and O'Farrell, P. H (1989). Genetic control of cell division patterns in the Drosophila embryo. Cell 57, 177-187.[Medline]

Edgar, B. A. and O'Farrell, P. H (1990). The first post-blastoderm cell cycles of Drosophila embryogenesis are regulated in G2 by string. Cell 62, 469-480.[Medline]

Featherstone, C. and Russell, P (1991). Fission yeast p107 Wee1 mitotic inhibitor is a tyrosine/serine kinase. Nature 349, 808-811.[Medline]

Galaktionov, K. and Beach, D (1991). Specific activation of cdc25 tyrosine phosphatases by B type cyclins: evidence for multiple roles for mitotic cyclins. Cell 67, 1181-1194.[Medline]

Gautier, J., Norbury, C., Lohka, M., Nurse, P. and Maller, J. L (1988). Purified maturation-promoting factor contains the product of a Xenopus homolog of the fission yeast cell cycle control gene cdc2+. Cell 54, 433-439.[Medline]

Gautier, J., Solomon, M. J., Booher, R. N., Bazan, J. F. and Kirschner, M. W (1991). cdc25 is a specific tyrosine phosphatase that directly activates p34cdc2. Cell 67, 197-211.[Medline]

Gerhart, J., Wu, M. and Kirschner, M (1984). Cell cycle dynamics of an M-phase-specific cytoplasmic factor in Xenopus laevis oocytes and eggs. J. Cell Biol 98, 1247-1255.[Abstract/Free Full Text]

Gould, K. L. and Nurse, P (1989). Tyrosine phosphorylation of the fission yeast cdc2+ protein kinase regulates entry into mitosis. Nature 342, 39-45.[Medline]

Gu, Y., Rosenblatt, J. and Morgan, D. O (1992). Cell cycle regulation of CDK2 activity by phosphorylation of Thr 160 and Tyr 15. EMBO J 11, 3995-4005.[Medline]

Guan, K., Broyles, S. S. and Dixon, J. E (1991). A Tyr/Ser protein phosphatase encoded by vaccinia virus. Nature 350, 359-362.[Medline]

Hoffman, I., Draetta, G. and Karsenti, E (1994). Activation of thephosphatase activity of human cdc25A by a cdk2-cyclin E dependent phosphorylation at the G1/S transition. EMBO J 13, 4302-4310.[Medline]

Jinno, S., Suto, K., Nagata, A., Igarashi, M., Kanaoka, Y., Nojima, H. and Okayama, H (1994). cdc25A is a novel phosphatase functioning early in the cell cycle. EMBO J 13, 1549-1556.[Medline]

Kakizuka, A., Sebastian, B., Borgemeyer, U., Hermans-Borgmeyer, I., Bolado, J., Hunter, T., Mooekstra, M. F. and Evans, R. M (1992). A mouse cdc25 homolog is differentially and developmentally expressed. Genes Dev 6, 578-590.[Abstract/Free Full Text]

Kumagai, A. and Dunphy, W. G (1992). Regulation of the cdc25 protein during the cell cycle in Xenopus extracts. Cell 70, 139-151.[Medline]

Lee, M. S., Enoch, T., Piwnica-Worms, H (1994). Mik 1 encodes a tyrosine kinase that phosphorylates p34cdc2on tyrosine 15. J. Biol. Chem 269, 30530-30537.[Abstract/Free Full Text]

Lee, M. S., Ogg, S., Xu, M., Parker, L. L., Donaghue, D. J., Maller, J. M. and Piwnica-Worms, H (1992). cdc25+encodes a protein phosphatase that dephosphorylates p34cdc2. Mol. Biol. Cell 3, 73-84.[Abstract]

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, 1111-1122.[Medline]

Masui, Y. and Markert, C. L (1971). Cytoplasmic control of nuclear behavior during meiotic maturation of frog oocytes. J. Exp. Zool 177, 129-145.[Medline]

Millar, J. B. A., McGowan, C. H., Lenaers, G., Jones, R. and Russell, P (1991). p80 cdc25 mitotic inducer is the tyrosine phosphatase that activates p34cdc2kinase in fission yeast. EMBO J 10, 4301-4309.[Medline]

Millar, J. B. A. and Russell, P (1992). The cdc25 M-phase inducer: an unconventional protein phosphatase. Cell 68, 407-410.[Medline]

Moreno, S. and Nurse, P (1991). Clues to action of cdc25 protein. Nature 351, 194-.

Nargi, J. L. and Woodford-Thomas, T. A (1994). Cloning and characterization of a cdc25 phosphatase from mouse lymphocytes. Immunogenetics 39, 99-108.[Medline]

Ogg, S., Gabrielli, B. and Piwnica-Worms, H (1994). Purification of a serine kinase that associates with and phosphorylates human cdc25c on serine 216. J. Biol. Chem 269, 30461-30469.[Abstract/Free Full Text]

Parker, L. L. Atherton-Fessler, S., Lee, M. S., Ogg, S., Falk, J. L., Swenson, K. I. and Piwnica-Worms, H (1991). Cyclin promotes the phosphorylation of p34cdc2in a wee1 dependent manner. EMBO J 10, 1255-1263.[Medline]

Pratt, H. P. M (1989). Marking time and making space: chronology and topography in the early mouse embryo. Int. Rev. Cytol 117, 99-130.[Medline]

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

Sadhu, K., Reed, S. I., Richardson, H. and Russell, P (1990). Human homolog of yeast cdc25 mitotic inducer is predominantly expressed in G2. Proc. Natl. Acad. Sci. USA 87, 5139-5143.[Abstract/Free Full Text]

Schultz, R. M (1993). Regulation of zygotic gene activation in the mouse. BioEssays 15, 531-538.[Medline]

Sebastian, B., Kakizuka, A. and Hunter, T (1993). Cdc25M2 activation of cyclin dependent kinases by dephosphorylation of threonine-14 and tyrosine-15. Proc. Nat. Acad. Sci. USA 90, 3521-3524.[Abstract/Free Full Text]

Smith, L. D. and Ecker, R. E (1971). The interaction of steroids with Rana pipiens oocytes in the induction of maturation. Dev. Biol 25, 232-247.[Medline]

Strausfield, U., Labbe, J.C., Fesquet, D., Caradore, J. C., Picard, A., Sadhu, K., Russell, P. and Doree, M (1991). Dephosphorylation and activation of a p34cdc2/cyclin B complex in vitro by human CDC25 protein. Nature 351, 242-245.[Medline]

Telford, N. A., Watson, A. J. and Schultz, G. A (1990). Transition from maternal to embryonic control in early mammalian development: a comparison of several species. Mol. Reprod. Dev 26, 90-100.[Medline]

Tessarollo, L., Tsoulfas, P., Martin-Zanca, D., Gilbert, D., Jenkins, N. A., Copeland, N. G. and Parada, L. F (1993). trk-C, a receptor for neurotropin 3, is widely expressed in the developing nervous system and in non-neuronal tissues. Development 118, 463-475.[Abstract]

Tsarfaty, I., Resau, J., Rulong, S., Keydar, I., Faletto, D. and Vande Woude, G (1992). The met proto-oncogene receptor and lumen formation. Science 257, 1258-1261.[Abstract/Free Full Text]

Tsarfaty, I., Rong, S., Resau, J., Shen, R., da Silva, P. and Vande Woude, G (1994). Met signaling in mesenchymal to epithelial conversion. Science 263, 98-101.[Abstract/Free Full Text]

White-Cooper, H., Alphey L. and Glover, D. M (1993). The cdc25 homologue twine is required for only some aspects of the entry into meiosis in Drosophila. J. Cell. Sci 106, 1035-1044.[Abstract]

Zinn, K., DiaMaio, D. and Maniatis, T (1983). Identification of two distinct regulatory regions adjacent to the-interferon gene. Cell 34, 865-879.[Medline]




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