From Cdc2 to Cdk1: when did the cell cycle kinase join its cyclin partner?
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[1] C. Markert,et al. Cytoplasmic control of nuclear behavior during meiotic maturation of frog oocytes. , 1971, The Journal of experimental zoology.
[2] Y. Masui,et al. Effects of cyclohexamide on a cytoplasmic factor initiating meiotic naturation in Xenopus oocytes. , 1975, Experimental cell research.
[3] M. Dorée,et al. Hormonal control of meiosis in starfish: stimulation of protein phosphorylation induced by 1-methyladenine , 1977, Molecular and Cellular Endocrinology.
[4] J. Gerhart,et al. Changes in protein phosphorylation accompanying maturation of Xenopus laevis oocytes. , 1977, Developmental biology.
[5] T. Kishimoto,et al. Role of germinal vesicle material in producing maturation-promoting factor in starfish oocyte. , 1981, Developmental biology.
[6] H. Kondo,et al. Generality of the action of various maturation-promoting factors. , 1982, Experimental cell research.
[7] E. B. Wagenaar. The timing of synthesis of proteins required for mitosis in the cell cycle of the sea urchin embryo. , 1983, Experimental cell research.
[8] A Picard,et al. Activity of the maturation-promoting factor and the extent of protein phosphorylation oscillate simultaneously during meiotic maturation of starfish oocytes. , 1983, Developmental biology.
[9] Eric T. Rosenthal,et al. Cyclin: A protein specified by maternal mRNA in sea urchin eggs that is destroyed at each cleavage division , 1983, Cell.
[10] J. Gerhart,et al. Cell cycle dynamics of an M-phase-specific cytoplasmic factor in Xenopus laevis oocytes and eggs , 1984, The Journal of cell biology.
[11] A. Picard,et al. The role of the germinal vesicle in producing maturation-promoting factor (MPF) as revealed by the removal and transplantation of nuclear material in starfish oocytes. , 1984, Developmental biology.
[12] A. Picard,et al. Role of protein synthesis and proteases in production and inactivation of maturation-promoting activity during meiotic maturation of starfish oocytes. , 1985, Developmental biology.
[13] J. Ruderman,et al. The clam embryo protein cyclin A induces entry into M phase and the resumption of meiosis in Xenopus oocytes , 1986, Cell.
[14] P. Nurse,et al. Negative Regulation of Mitosis , 1987 .
[15] P. Nurse,et al. Complementation used to clone a human homologue of the fission yeast cell cycle control gene cdc2 , 1987, Nature.
[16] Jean Gautier,et al. Purified maturation-promoting factor contains the product of a Xenopus homolog of the fission yeast cell cycle control gene cdc2 + , 1988, Cell.
[17] J. Maller,et al. Purification of maturation-promoting factor, an intracellular regulator of early mitotic events. , 1988, Proceedings of the National Academy of Sciences of the United States of America.
[18] L. Meijer,et al. cdc2 is a component of the M phase-specific histone H1 kinase: Evidence for identity with MPF , 1988, Cell.
[19] M. Kirschner,et al. Regulation of MPF activity in vitro , 1988, Cell.
[20] J. Labbé,et al. Germinal vesicle components are not required for the cell-cycle oscillator of the early starfish embryo. , 1988, Developmental biology.
[21] D. Beach,et al. Involvement of cdc13+ in mitotic control in Schizosaccharomyces pombe: possible interaction of the gene product with microtubules. , 1988, The EMBO journal.
[22] J. Labbé,et al. Activation at M-phase of a protein kinase encoded by a starfish homologue of the cell cycle control gene cdc2+ , 1988, Nature.
[23] J. Minshull,et al. Translation of cyclin mRNA is necessary for extracts of activated Xenopus eggs to enter mitosis , 1989, Cell.
[24] J. Labbé,et al. MPF from starfish oocytes at first meiotic metaphase is a heterodimer containing one molecule of cdc2 and one molecule of cyclin B. , 1989, The EMBO journal.
[25] Sergio Moreno,et al. Regulation of p34cdc2 protein kinase during mitosis , 1989, Cell.
[26] Andrew W. Murray,et al. Cyclin synthesis drives the early embryonic cell cycle , 1989, Nature.
[27] David Beach,et al. cdc2 protein kinase is complexed with both cyclin A and B: Evidence for proteolytic inactivation of MPF , 1989, Cell.
[28] J. Newport,et al. Fission yeast p13 blocks mitotic activation and tyrosine dephosphorylation of the Xenopus cdc2 protein kinase , 1989, Cell.
[29] J. Maller,et al. Dephosphorylation and activation of Xenopusp34cdc2 protein kinase during the cell cycle , 1989, Nature.
[30] D. Beach,et al. The fission yeast cdc2/cdc13/suc1 protein kinase: Regulation of catalytic activity and nuclear localization , 1989, Cell.
[31] L. Meijer,et al. Cyclin is a component of the sea urchin egg M‐phase specific histone H1 kinase. , 1989, The EMBO journal.
[32] T. Hunt,et al. The role of cyclin synthesis, modification and destruction in the control of cell division , 1989, Journal of Cell Science.
[33] J. Labbé,et al. Purification of MPF from starfish: Identification as the H1 histone kinase p34cdc2 and a possible mechanism for its periodic activation , 1989, Cell.
[34] Tony Hunter,et al. Human cyclin A is adenovirus E1A-associated protein p60 and behaves differently from cyclin B , 1990, Nature.
[35] P. O’Farrell,et al. Drosophila cdc2 homologs: a functional homolog is coexpressed with a cognate variant. , 1990, The EMBO journal.
[36] Drosophila cdc2homologs: a functional homologis coexpressed witha cognatevariant , 1990 .
[37] J. Maller,et al. Cyclin B in Xenopus oocytes: implications for the mechanism of pre‐MPF activation. , 1991, The EMBO journal.
[38] U. Strausfeld,et al. Dephosphorylation and activation of a p34cdc2/cyclin B complex in vitro by human CDC25 protein , 1991, Nature.
[39] J. Newport,et al. Evidence that the G1-S and G2-M transitions are controlled by different cdc2 proteins in higher eukaryotes , 1991, Cell.
[40] K. Matsumoto,et al. Cloning of a human cDNA encoding a CDC2-related kinase by complementation of a budding yeast cdc28 mutation. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[41] S. Elledge,et al. A new human p34 protein kinase, CDK2, identified by complementation of a cdc28 mutation in Saccharomyces cerevisiae, is a homolog of Xenopus Eg1. , 1991, The EMBO journal.
[42] J. Labbé,et al. Okadaic acid mimics a nuclear component required for cyclin B-cdc2 kinase microinjection to drive starfish oocytes into M phase , 1991, The Journal of cell biology.
[43] J. Camonis,et al. Cloning by differential screening of a Xenopus cDNA coding for a protein highly homologous to cdc2. , 1991, Proceedings of the National Academy of Sciences of the United States of America.