INRA, UMR1318, Institut Jean-Pierre Bourgin, Versailles, France.
PLoS Genet. 2012;8(7):e1002865. doi: 10.1371/journal.pgen.1002865. Epub 2012 Jul 26.
Cell cycle control is modified at meiosis compared to mitosis, because two divisions follow a single DNA replication event. Cyclin-dependent kinases (CDKs) promote progression through both meiosis and mitosis, and a central regulator of their activity is the APC/C (Anaphase Promoting Complex/Cyclosome) that is especially required for exit from mitosis. We have shown previously that OSD1 is involved in entry into both meiosis I and meiosis II in Arabidopsis thaliana; however, the molecular mechanism by which OSD1 controls these transitions has remained unclear. Here we show that OSD1 promotes meiotic progression through APC/C inhibition. Next, we explored the functional relationships between OSD1 and the genes known to control meiotic cell cycle transitions in Arabidopsis. Like osd1, cyca1;2/tam mutation leads to a premature exit from meiosis after the first division, while tdm mutants perform an aberrant third meiotic division after normal meiosis I and II. Remarkably, while tdm is epistatic to tam, osd1 is epistatic to tdm. We further show that the expression of a non-destructible CYCA1;2/TAM provokes, like tdm, the entry into a third meiotic division. Finally, we show that CYCA1;2/TAM forms an active complex with CDKA;1 that can phosphorylate OSD1 in vitro. We thus propose that a functional network composed of OSD1, CYCA1;2/TAM, and TDM controls three key steps of meiotic progression, in which OSD1 is a meiotic APC/C inhibitor.
细胞周期调控在减数分裂中与有丝分裂不同,因为两次分裂后只有一次 DNA 复制。细胞周期蛋白依赖性激酶(CDK)促进减数分裂和有丝分裂的进行,其活性的中央调节剂是 APC/C(后期促进复合物/细胞周期蛋白体),它特别需要退出有丝分裂。我们之前已经表明,OSD1 参与拟南芥有丝分裂 I 和有丝分裂 II 的进入;然而,OSD1 控制这些转变的分子机制仍不清楚。在这里,我们表明 OSD1 通过 APC/C 抑制促进减数分裂的进展。接下来,我们探讨了 OSD1 与已知控制拟南芥减数细胞周期转变的基因之间的功能关系。与 osd1 一样,cyca1;2/tam 突变导致第一次分裂后过早退出减数分裂,而 tdm 突变体在正常减数分裂 I 和 II 后进行异常的第三次减数分裂。值得注意的是,虽然 tdm 对 tam 是上位性的,但 osd1 对 tdm 是上位性的。我们进一步表明,不可破坏的 CYCA1;2/TAM 的表达像 tdm 一样,引发第三次减数分裂的进入。最后,我们表明 CYCA1;2/TAM 与 CDKA;1 形成一个活性复合物,该复合物可以在体外磷酸化 OSD1。因此,我们提出由 OSD1、CYCA1;2/TAM 和 TDM 组成的功能网络控制减数分裂进展的三个关键步骤,其中 OSD1 是减数 APC/C 抑制剂。