Cell cycle control genes in fission yeast and mammalian cells.
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Summary
There is a remarkable conservation of many genes involved in eukaryotic cell cycle control and controlling elements in mammalian cells, and the power of yeast genetics for investigation of mammalian gene function is highlighted.
- Type
- review
- Published
- 1988-10-01
- Cited by
- 150
- References
- 22
- OpenAlex
- https://openalex.org/W2021607010
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9874830
Keywords
Schizosaccharomyces pombe, Biology, Gene, Yeast, Schizosaccharomyces
References
- suc1 is an essential gene involved in both the cell cycle and growth in fission yeast
- cdc25+ functions as an inducer in the mitotic control of fission yeast.
- 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
- Initiation of mitosis in relation to the cell division cycle.
- The timing of early developmental events in Xenopus
- Functionally homologous cell cycle control genes in budding and fission yeast
- Negative regulation of mitosis by wee1+, a gene encoding a protein kinase homolog.
- Control of timing of cell cycle events in fission yeast by the wee 1+ gene
- Sequence of the cell division gene CDC2 from Schizosaccharomyces pombe; patterns of splicing and homology to protein kinases.
- Mammalian Cell Fusion : Studies on the Regulation of DNA Synthesis and Mitosis
- Identification of p34 and p13, human homologs of the cell cycle regulators of fission yeast encoded by cdc2+ and suc1+.
- The mitotic inducer nim1+ functions in a regulatory network of protein kinase homologs controlling the initiation of mitosis.
- Genetic control of cell size at cell division in yeast
- Cell cycle control genes in yeast
- The cell cycle control gene cdc2+ of fission yeast encodes a protein kinase potentially regulated by phosphorylation.
- Dual regulation of the yeast CDC28-p40 protein kinase complex: cell cycle, pheromone, and nutrient limitation effects.
- Site-specific mutagenesis of cdc2+, a cell cycle control gene of the fission yeast Schizosaccharomyces pombe
- Animal cell cycle.
- Interaction between cdc13+ and cdc2+ in the control of mitosis in fission yeast; dissociation of the G1 and G2 roles of the cdc2+ protein kinase.
Cited by
- Identification of an activator required for elevation of maturation- promoting factor (MPF) activity by gamma-S-ATP
- M phase-promoting factor: its identification as the M phase-specific H1 histone kinase and its activation by dephosphorylation
- On the importance of protein phosphorylation in cell cycle control
- HIV-1 Accessory Proteins: VpR
- Alterations in cell cycle and apoptosis in drug resistant cells
- Genetic and molecular basis for cellular senescence.
- Cell cycle regulation and erythroid differentiation.
- Oncoprotein kinases in mitosis.
- Ultrastructure and cell wall composition in cell division cycle mutants ofSchizosaccharomyces pombe deficient in septum formation
- Nuclear Structure and Function
- Repression of dihydrofolate reductase synthesis during myogenesis : identification and characterization of a transcriptional regulatory mechanism
- Vitrificação de ovócitos e embriões bovinos utilizando-se etilenoglicol, dimetilsulfóxido e dimetilformamida como agentes crioprotetores
- Timing of events during flower organogenesis: Arabidopsis as a model system.
- Biochemical events controlling initiation and propagation of the S phase of the cell cycle.
- Hair cell regeneration: the identities of progenitor cells, potential triggers and instructive cues.
- Oxidative stress and cell cycle checkpoint function.
- Functional components of microtubule-organizing centers.
- Calcium signals in growth factor signal transduction.
- RB and Cdc2 expression in brain: correlations with 3H-thymidine incorporation and neurogenesis
- Phosphorylation-related accumulation of the 125K nuclear matrix protein mitotin in human mitotic cells.
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