Evidence that a free-running oscillator drives G1 events in the budding yeast cell cycle
Open Access
- 23 September 1999
- journal article
- letter
- Published by Springer Nature in Nature
- Vol. 401 (6751) , 394-397
- https://doi.org/10.1038/43927
Abstract
In yeast and somatic cells, mechanisms ensure cell-cycle events are initiated only when preceding events have been completed1. In contrast, interruption of specific cell-cycle processes in early embryonic cells of many organisms does not affect the timing of subsequent events2, indicating that cell-cycle events are triggered by a free-running cell-cycle oscillator. Here we present evidence for an independent cell-cycle oscillator in the budding yeast Saccharomyces cerevisiae. We observed periodic activation of events normally restricted to the G1 phase of the cell cycle, in cells lacking mitotic cyclin-dependent kinase activities that are essential for cell-cycle progression. As in embryonic cells, G1 events cycled on schedule, in the absence of S phase or mitosis, with a period similar to the cell-cycle time of wild-type cells. Oscillations of similar periodicity were observed in cells responding to mating pheromone in the absence of G1 cyclin (Cln)- and mitotic cyclin (Clb)-associated kinase activity, indicating that the oscillator may function independently of cyclin-dependent kinase dynamics. We also show that Clb-associated kinase activity is essential for ensuring dependencies by preventing the initiation of new G1 events when cell-cycle progression is delayed.Keywords
This publication has 30 references indexed in Scilit:
- Cdc53p Acts in Concert with Cdc4p and Cdc34p To Control the G1-to-S-Phase Transition and Identifies a Conserved Family of ProteinsMolecular and Cellular Biology, 1996
- Rapid Degradation of the G 1 Cyclin Cln2 Induced by CDK-Dependent PhosphorylationScience, 1996
- The B-type cyclin kinase inhibitor p40SIC1 controls the G1 to S transition in S. cerevisiaeCell, 1994
- Positive feedback in the activation of Gl cyclins in yeastNature, 1991
- A potential positive feedback loop controlling CLN1 and CLN2 gene expression at the start of the yeast cell cycleCell, 1991
- G1 Control in Yeast and Animal CellsPublished by Cold Spring Harbor Laboratory ,1991
- Checkpoints: Controls That Ensure the Order of Cell Cycle EventsScience, 1989
- Dominoes and Clocks: the Union of Two Views of the Cell CycleScience, 1989
- Reversible arrest of haploid yeast cells at the initiation of DNA synthesis by a diffusible sex factorExperimental Cell Research, 1973
- Genetic control of the cell division cycle in yeast *1IV. Genes controlling bud emergence and cytokinesisExperimental Cell Research, 1971