Boston University School of Medicine, Boston, MA 02118, USA.
Department of Pharmacological Sciences, Stony Brook University School of Medicine, Stony Brook, NY 11794, USA.
Cells. 2021 Dec 24;11(1):46. doi: 10.3390/cells11010046.
Mitotic exit is a critical cell cycle transition that requires the careful coordination of nuclear positioning and cyclin B destruction in budding yeast for the maintenance of genome integrity. The mitotic exit network (MEN) is a Ras-like signal transduction pathway that promotes this process during anaphase. A crucial step in MEN activation occurs when the Dbf2-Mob1 protein kinase complex associates with the Nud1 scaffold protein at the yeast spindle pole bodies (SPBs; centrosome equivalents) and thereby becomes activated. This requires prior priming phosphorylation of Nud1 by Cdc15 at SPBs. Cdc15 activation, in turn, requires both the Tem1 GTPase and the Polo kinase Cdc5, but how Cdc15 associates with SPBs is not well understood. We have identified a hyperactive allele of , , that recruits Cdc15 to SPBs in all stages of the cell cycle in a -independent manner. This allele leads to early recruitment of Dbf2-Mob1 during metaphase and requires known Cdc15 phospho-sites on Nud1. The presence of leads to loss of coupling between nuclear position and mitotic exit in cells with mispositioned spindles. Our findings highlight the importance of scaffold regulation in signaling pathways to prevent improper activation.
有丝分裂后期是细胞周期的一个关键转折点,需要在芽殖酵母中精心协调核定位和细胞周期蛋白 B 的降解,以维持基因组的完整性。有丝分裂后期退出网络(MEN)是一种类似于 Ras 的信号转导途径,在后期促进这一过程。MEN 激活的一个关键步骤是 Dbf2-Mob1 蛋白激酶复合物与酵母纺锤体极体(SPB;中心体等价物)上的 Nud1 支架蛋白结合,从而被激活。这需要 Cdc15 在 SPB 上对 Nud1 进行初步的引发磷酸化。Cdc15 的激活反过来又需要 Tem1 GTP 酶和 Polo 激酶 Cdc5,但 Cdc15 如何与 SPB 结合尚不清楚。我们已经鉴定出一种高活性的 等位基因,该基因以 Tem1 非依赖性的方式在细胞周期的所有阶段将 Cdc15 招募到 SPB 上。该等位基因导致在中期 Dbf2-Mob1 的早期招募,并需要 Nud1 上已知的 Cdc15 磷酸化位点。 的存在导致在纺锤体位置不当的细胞中核定位和有丝分裂后期退出之间的耦合丧失。我们的研究结果强调了支架调节在信号通路中的重要性,以防止不当激活。