We have used time-lapse fluorescence microscopy to study the properties of the Cdc25B and Cdc25C phosphatases that have both been implicated as initiators of mitosis in human cells. To differentiate between the functions of the two proteins, we have microinjected expression constructs encoding Cdc25B or Cdc25C or their GFP-chimeras into synchronized tissue culture cells. This assay allows us to express the proteins at defined points in the cell cycle. We have followed the microinjected cells by time-lapse microscopy, in the presence or absence of DNA synthesis inhibitors, and assayed whether they enter mitosis prematurely or at the correct time. We find that overexpressing Cdc25B alone rapidly causes S phase and G2 phase cells to enter mitosis, whether or not DNA replication is complete, whereas overexpressing Cdc25C does not cause premature mitosis. Overexpressing Cdc25C together with cyclin B1 does shorten the G2 phase and can override the unreplicated DNA checkpoint, but much less efficiently than overexpressing Cdc25B. These results suggest that Cdc25B and Cdc25C do not respond identically to the same cell cycle checkpoints. This difference may be related to the differential localization of the proteins; Cdc25C is nuclear throughout interphase, whereas Cdc25B is nuclear in the G1 phase and cytoplasmic in the S and G2 phases. We have found that the change in subcellular localization of Cdc25B is due to nuclear export and that this is dependent on cyclin B1. Our data suggest that although both Cdc25B and Cdc25C can promote mitosis, they are likely to have distinct roles in the controlling the initiation of mitosis.
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9 August 1999
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August 09 1999
Cdc25b and Cdc25c Differ Markedly in Their Properties as Initiators of Mitosis
Christina Karlsson,
Christina Karlsson
aWellcome/CRC Institute, Cambridge CB2 1QR United Kingdom
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Stephanie Katich,
Stephanie Katich
bFS 6 Angewandte Tumorvirologie (F0400), Deutsches Krebsforschungszentrum, 69120 Heidelberg, Germany
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Anja Hagting,
Anja Hagting
aWellcome/CRC Institute, Cambridge CB2 1QR United Kingdom
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Ingrid Hoffmann,
Ingrid Hoffmann
bFS 6 Angewandte Tumorvirologie (F0400), Deutsches Krebsforschungszentrum, 69120 Heidelberg, Germany
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Jonathon Pines
Jonathon Pines
aWellcome/CRC Institute, Cambridge CB2 1QR United Kingdom
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Christina Karlsson
aWellcome/CRC Institute, Cambridge CB2 1QR United Kingdom
Stephanie Katich
bFS 6 Angewandte Tumorvirologie (F0400), Deutsches Krebsforschungszentrum, 69120 Heidelberg, Germany
Anja Hagting
aWellcome/CRC Institute, Cambridge CB2 1QR United Kingdom
Ingrid Hoffmann
bFS 6 Angewandte Tumorvirologie (F0400), Deutsches Krebsforschungszentrum, 69120 Heidelberg, Germany
Jonathon Pines
aWellcome/CRC Institute, Cambridge CB2 1QR United Kingdom
1.used in this paper: CDK1, cyclin-dependent kinase 1; DIC, differential interference contrast; GFP; green fluorescent protein; LMB, leptomycin B; MmGFP, modified green fluorescent protein; PCC, premature chromosome condensation; YFP, yellow fluorescent protein
Received:
June 04 1999
Revision Requested:
June 21 1999
Accepted:
June 24 1999
Online ISSN: 1540-8140
Print ISSN: 0021-9525
© 1999 The Rockefeller University Press
1999
The Rockefeller University Press
J Cell Biol (1999) 146 (3): 573–584.
Article history
Received:
June 04 1999
Revision Requested:
June 21 1999
Accepted:
June 24 1999
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Citation
Christina Karlsson, Stephanie Katich, Anja Hagting, Ingrid Hoffmann, Jonathon Pines; Cdc25b and Cdc25c Differ Markedly in Their Properties as Initiators of Mitosis. J Cell Biol 9 August 1999; 146 (3): 573–584. doi: https://doi.org/10.1083/jcb.146.3.573
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