Universal control mechanism regulating onset of M-phase
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Summary
The onset of M-phase is regulated by a mechanism common to all eukaryotic cells and requires p34cdc2 dephosphorylation and association with cyclin.
- Type
- review
- Published
- 1990-04-05
- Cited by
- 2,800
- References
- 95
- OpenAlex
- https://openalex.org/W2072720547
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4323343
Keywords
Dephosphorylation, Mechanism (biology), Cell biology, Cyclin, Kinase
References
- Purification of MPF from starfish: identification as the H1 histone kinase p34cdc2 and a possible mechanism for its periodic activation.
- p34cdc2 is located in both nucleus and cytoplasm; part is centrosomally associated at G2/M and enters vesicles at anaphase.
- suc1 is an essential gene involved in both the cell cycle and growth in fission yeast
- Involvement of cdc13+ in mitotic control in Schizosaccharomyces pombe: possible interaction of the gene product with microtubules.
- A post‐ribosomal supernatant from activated Xenopus eggs that displays post‐translationally regulated oscillation of its cdc2+ mitotic kinase activity.
- The Molecular biology of the yeast saccharomyces, life cycle and inheritance
- The Molecular biology of the yeast Saccharomyces : metabolism and gene expression
- Methods for the assessment of site-specific histone phosphorylation.
- The biology of the cell cycle
- Sucl+ encodes a predicted 13-kilodalton protein that is essential for cell viability and is directly involved in the division cycle of Schizosaccharomyces pombe
- Cloning and sequencing of the cyclin-related cdc13+ gene and a cytological study of its role in fission yeast mitosis.
- Regulatory genes controlling mitosis in the fission yeast Schizosaccharomyces pombe.
- Mitotic control by metaphase-promoting factor and cdc proteins.
- Cyclin in fission yeast
- The cyclic behavior of a cytoplasmic factor controlling nuclear membrane breakdown
- cdc25+ functions as an inducer in the mitotic control of fission yeast.
- A homolog of the cell cycle control protein p34cdc2 participates in the division cycle of Chlamydomonas, and a similar protein is detectable in higher plants and remote taxa.
- The fission yeast cdc2/cdc13/suc1 protein kinase: regulation of catalytic activity and nuclear localization.
- Gene required in G1 for commitment to cell cycle and in G2 for control of mitosis in fission yeast
- Complementation used to clone a human homologue of the fission yeast cell cycle control gene cdc2
Cited by
- A pre‐start checkpoint preventing mitosis in fission yeast acts independently of p34cdc2 tyrosine phosphorylation.
- Higher eucaryotic cdc25 proteins are structurally related to phosphoseryl/threonyl protein phosphatases
- Behavior of sperm nuclei incorporated into parthenogenetic mouse eggs prior to the first cleavage division
- Proline‐Directed Protein Kinase (p34cdc2/p58cyclin A) Phosphorylates Bovine Neurofilaments
- Human cyclins A and B1 are differentially located in the cell and undergo cell cycle-dependent nuclear transport
- Fission yeast p107wee1 mitotic inhibitor is a tyrosine/serine kinase
- Starting and stopping
- Microsurgical removal of centrosomes blocks cell reproduction and centriole generation in BSC-1 cells.
- Hyperphosphorylation of the retinoblastoma gene product is determined by domains outside the simian virus 40 large-T-antigen-binding regions
- The plant cell cycle: conserved and unique features in mitotic control.
- Expression, purification and kinetic behaviour of fission yeast low M r protein‐tyrosine phosphatase
- Virus-encoded cyclin
- Intracellular coordination by the ultradian clock.
- The B subunit of the DNA polymerase alpha-primase complex in Saccharomyces cerevisiae executes an essential function at the initial stage of DNA replication
- Patterns of inheritance, development and the mitotic cycle in the protist Physarum polycephalum.
- Cyclin A expression in normal and transformed alveolar epithelial cells.
- Effect of B-type cyclin over-expression on radiation-induced mitotic delay in the fission yeast.
- Resistance of mammalian tumor cells to inhibitors of DNA topoisomerase II.
- Induction of apoptosis by taxol and cisplatin and effect on cell cycle-related proteins in cisplatin-sensitive and -resistant human ovarian cells.
- The Role of fnx1, a Fission Yeast Multidrug Resistance Protein, in the Transition of Cells to a Quiescent G0 State
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