Both Cyclin B levels and DNA-replication checkpoint control the early embryonic mitoses in Drosophila
- 15 January 2004
- journal article
- Published by The Company of Biologists in Development
- Vol. 131 (2) , 401-411
- https://doi.org/10.1242/dev.00944
Abstract
The earliest embryonic mitoses in Drosophila, as in other animals except mammals, are viewed as synchronous and of equal duration. However, we observed that total cell-cycle length steadily increases after cycle 7, solely owing to the extension of interphase. Between cycle 7 and cycle 10, this extension is DNA-replication checkpoint independent, but correlates with the onset of Cyclin B oscillation. In addition, nuclei in the middle of embryos have longer metaphase and shorter anaphase than nuclei at the two polar regions. Interestingly, sister chromatids move faster in anaphase in the middle than the posterior region. These regional differences correlate with local differences in Cyclin B concentration. After cycle 10, interphase and total cycle duration of nuclei in the middle of the embryo are longer than at the poles. Because interphase also extends in checkpoint mutant (grapes) embryo after cycle 10, although less dramatic than wild-type embryos, interphase extension after cycle 10 is probably controlled by both Cyclin B limitation and the DNA-replication checkpoint.Keywords
This publication has 50 references indexed in Scilit:
- Optical workstation with concurrent, independent multiphoton imaging and experimental laser microbeam capabilitiesReview of Scientific Instruments, 2003
- Poleward Microtubule Flux Is a Major Component of Spindle Dynamics and Anaphase A in Mitotic Drosophila EmbryosCurrent Biology, 2002
- A His2AvDGFP Fusion Gene Complements a Lethal His2AvD Mutant Allele and Provides an in Vivo Marker for Drosophila Chromosome BehaviorDNA and Cell Biology, 1999
- Cancer Cell CyclesScience, 1996
- Activation of transcription in Drosophila embryos is a gradual process mediated by the nucleocytoplasmic ratio.Genes & Development, 1996
- Phosphorylation by p34cdc2 regulates spindle association of human Eg5, a kinesin-related motor essential for bipolar spindle formation in vivoPublished by Elsevier ,1995
- Temporal regulation in the early embryo: is MBT too good to be true?Trends in Genetics, 1992
- What Controls the Cell CycleScientific American, 1991
- Cell cycle control by the nucleo-cytoplasmic ratio in early Drosophila developmentCell, 1986
- A major developmental transition in early xenopus embryos: I. characterization and timing of cellular changes at the midblastula stageCell, 1982