Yu K R, Saint R B, Sullivan W
Department of Biology, University of California at Santa Cruz, Santa Cruz, California 95064, USA.
Nat Cell Biol. 2000 Sep;2(9):609-15. doi: 10.1038/35023555.
Mutations in the embryonic Drosophila Grapes/Chk1 checkpoint result in an abbreviated interphase, chromosome condensation defects and metaphase delays. To clarify the relationship between these phenotypes, we simultaneously timed multiple nuclear and cytoplasmic events in mutant grp-derived embryos. These studies support a model in which grp disrupts an S-phase checkpoint, which results in progression into metaphase with incompletely replicated chromosomes. We also show that chromosome condensation is independent of the state of DNA replication in the early embryo. Therefore, grp condensation defects are not a direct consequence of entering metaphase with incompletely replicated chromosomes. Rather, initiation of chromosome condensation (ICC) occurs at the normal time in grp-derived embryos, but the shortened interval between ICC and metaphase does not provide sufficient time to complete condensation. Our results suggest that these condensation defects, rather than incomplete DNA replication, are responsible for the extensive metaphase delays observed in grp-derived embryos. This analysis provides an example of how the loss of a checkpoint can disrupt the timing of multiple events not directly monitored by that checkpoint. These results are likely to apply to vertebrate cells and suggest new strategies for destroying checkpoint-compromised cancer cells.
果蝇胚胎期的葡萄/Chk1 检查点发生突变会导致间期缩短、染色体凝聚缺陷和中期延迟。为了阐明这些表型之间的关系,我们在源自突变型 grp 的胚胎中同时对多个核内和胞质事件进行了计时。这些研究支持了一种模型,即 grp 破坏了 S 期检查点,导致携带未完全复制染色体进入中期。我们还表明,在早期胚胎中,染色体凝聚与 DNA 复制状态无关。因此,grp 的凝聚缺陷并非携带未完全复制染色体进入中期的直接后果。相反,染色体凝聚起始(ICC)在源自 grp 的胚胎中正常时间发生,但 ICC 与中期之间缩短的间隔没有提供足够时间来完成凝聚。我们的结果表明,这些凝聚缺陷而非不完全的 DNA 复制,是导致在源自 grp 的胚胎中观察到广泛中期延迟的原因。该分析提供了一个例子,说明检查点缺失如何扰乱该检查点未直接监测的多个事件的时间安排。这些结果可能适用于脊椎动物细胞,并为摧毁检查点功能受损的癌细胞提出了新策略。