Institute of Molecular and Cell Biology, Agency for Science, Technology and Research, Proteos, 61 Biopolis Drive, 138673, Singapore.
J Cell Sci. 2012 May 15;125(Pt 10):2533-43. doi: 10.1242/jcs.104497. Epub 2012 Feb 24.
Cyclin-dependent kinases (CDKs) regulate septin organization in a cell-cycle-dependent manner in yeast. However, the mechanism remains unclear. Here, we show that the Candida albicans CDK Cdc28 phosphorylates the Nim1-related kinase Gin4, a known septin regulator, activating its kinase activity, which in turn phosphorylates the Sep7 septin. Gin4 contains a cluster of CDK phosphorylation sites near the kinase domain. Replacing serine/threonine with alanine in these sites prevents Gin4 activation, weakens its association with Sep7, alters Sep7 dynamics and causes morphological and cytokinetic defects. By contrast, phosphomimetic mutation enhances the kinase activity with only moderate deteriorating effects. We also found that Gin4 has both kinase-independent and -dependent functions, acting during G1 phase and mitosis, respectively, with the former being essential for septin ring assembly. Thus, we have identified a previously unknown signaling pathway linking CDKs and the septins that provides new insights into the mechanisms controlling septin organization and function in coordination with cell-cycle phases.
细胞周期蛋白依赖性激酶 (CDKs) 在酵母中以细胞周期依赖性方式调节隔膜的组织。然而,其机制尚不清楚。在这里,我们表明,白色念珠菌 CDK Cdc28 磷酸化了已知的隔膜调节因子 Nim1 相关激酶 Gin4,激活其激酶活性,进而磷酸化 Sep7 隔膜。Gin4 在激酶结构域附近含有一组 CDK 磷酸化位点。用丙氨酸替代这些位点的丝氨酸/苏氨酸会阻止 Gin4 的激活,削弱其与 Sep7 的结合,改变 Sep7 的动力学并导致形态和胞质分裂缺陷。相比之下,磷酸模拟突变增强了激酶活性,只有适度的恶化作用。我们还发现 Gin4 具有激酶非依赖性和依赖性两种功能,分别在 G1 期和有丝分裂期发挥作用,前者对于隔膜环的组装是必需的。因此,我们已经确定了一个以前未知的信号通路,将 CDKs 和隔膜联系起来,为协调细胞周期阶段控制隔膜组织和功能的机制提供了新的见解。