Department of Biology, Technion-Israel Institute of Technology, Haifa, Israel.
PLoS One. 2010 Jun 8;5(6):e11005. doi: 10.1371/journal.pone.0011005.
Tight regulation of developmental pathways is of critical importance to all organisms, and is achieved by a transcriptional cascade ensuring the coordinated expression of sets of genes. We aimed to explore whether a strong signal is required to enter and complete a developmental pathway, by using meiosis in budding yeast as a model. We demonstrate that meiosis in budding yeast is insensitive to drastic changes in the levels of its consecutive positive regulators (Ime1, Ime2, and Ndt80). Entry into DNA replication is not correlated with the time of transcription of the early genes that regulate this event. Entry into nuclear division is directly regulated by the time of transcription of the middle genes, as premature transcription of their activator NDT80, leads to a premature entry into the first meiotic division, and loss of coordination between DNA replication and nuclear division. We demonstrate that Cdk1/Cln3 functions as a negative regulator of Ime2, and that ectopic expression of Cln3 delays entry into nuclear division as well as NDT80 transcription. Because Ime2 functions as a positive regulator for premeiotic DNA replication and NDT80 transcription, as well as a negative regulator of Cdk/Cln, we suggest that a double negative feedback loop between Ime2 and Cdk1/Cln3 promotes a bistable switch from the cell cycle to meiosis. Moreover, our results suggest a regulatory mode switch that ensures robust meiosis as the transcription of the early meiosis-specific genes responds in a graded mode to Ime1 levels, whereas that of the middle and late genes as well as initiation of DNA replication, are regulated in a threshold mode.
发育途径的严格调控对所有生物都至关重要,它是通过一个转录级联来实现的,该级联确保了一组基因的协调表达。我们旨在通过以芽殖酵母的减数分裂作为模型来探索是否需要强烈的信号才能进入并完成发育途径。我们证明,芽殖酵母的减数分裂对其连续正调控因子(Ime1、Ime2 和 Ndt80)水平的剧烈变化不敏感。进入 DNA 复制与调节该事件的早期基因的转录时间无关。进入核分裂直接受中间基因转录时间的调节,因为它们的激活因子 NDT80 的过早转录会导致过早进入第一次减数分裂,并导致 DNA 复制和核分裂之间的协调丧失。我们证明 Cdk1/Cln3 作为 Ime2 的负调节剂起作用,并且 Cln3 的异位表达会延迟进入核分裂以及 NDT80 转录。因为 Ime2 作为有丝分裂前期 DNA 复制和 NDT80 转录的正调节剂以及 Cdk/Cln 的负调节剂起作用,我们建议 Ime2 和 Cdk1/Cln3 之间的双负反馈环促进了从细胞周期到减数分裂的双稳态开关。此外,我们的结果表明,一种调节模式转换确保了稳健的减数分裂,因为早期减数分裂特异性基因的转录以渐变模式对 Ime1 水平作出反应,而中间和晚期基因以及 DNA 复制的起始则以阈值模式进行调节。