Division of Biomedical Cell Biology, Warwick Medical School, University of Warwick, Coventry, United Kingdom.
PLoS One. 2013 Oct 16;8(10):e77487. doi: 10.1371/journal.pone.0077487. eCollection 2013.
The spatial and temporal control of polarity is fundamental to the survival of all organisms. Cells define their polarity using highly conserved mechanisms that frequently rely upon the action of small GTPases, such as Ras and Cdc42. Schizosaccharomyces pombe is an ideal system with which to study the control of cell polarity since it grows from defined tips using Cdc42-mediated actin remodeling. Here we have investigated the importance of Ras1-GTPase activity for the coordination of polarized cell growth during fission yeast mating. Following pheromone stimulation, Ras1 regulates both a MAPK cascade and the activity of Cdc42 to enable uni-directional cell growth towards a potential mating partner. Like all GTPases, when bound to GTP, Ras1 adopts an active conformation returning to an inactive state upon GTP-hydrolysis, a process accelerated through interaction with negative regulators such as GAPs. Here we show that, at low levels of pheromone stimulation, loss of negative regulation of Ras1 increases signal transduction via the MAPK cascade. However, at the higher concentrations observed during mating, hyperactive Ras1 mutations promote cell death. We demonstrate that these cells die due to their failure to coordinate active Cdc42 into a single growth zone resulting in disorganized actin deposition and unsustainable elongation from multiple tips. These results provide a striking demonstration that the deactivation stage of Ras signaling is fundamentally important in modulating cell polarity.
极性的时空控制对于所有生物的生存都是至关重要的。细胞使用高度保守的机制来定义其极性,这些机制经常依赖于小 GTPase 的作用,如 Ras 和 Cdc42。裂殖酵母是研究细胞极性控制的理想系统,因为它使用 Cdc42 介导的肌动蛋白重塑从定义的尖端生长。在这里,我们研究了 Ras1-GTPase 活性在有丝分裂酵母交配过程中协调极化细胞生长的重要性。在受到交配信息素刺激后,Ras1 调节 MAPK 级联和 Cdc42 的活性,以实现朝向潜在交配伙伴的单向细胞生长。像所有 GTPase 一样,当与 GTP 结合时,Ras1 采用活性构象,在 GTP 水解后回到非活性状态,这一过程通过与 GAP 等负调节剂的相互作用加速。在这里,我们表明,在低水平的交配信息素刺激下,Ras1 的负调控丧失会增加通过 MAPK 级联的信号转导。然而,在交配过程中观察到的更高浓度下,过度活跃的 Ras1 突变会促进细胞死亡。我们证明,这些细胞由于无法将活性 Cdc42 协调到一个单一的生长区域而死亡,导致肌动蛋白沉积紊乱和多个尖端的不可持续伸长。这些结果提供了一个惊人的例证,表明 Ras 信号转导的失活阶段对于调节细胞极性至关重要。