Lee Mid Eum, Lo Wing-Cheong, Miller Kristi E, Chou Ching-Shan, Park Hay-Oak
Molecular Cellular Developmental Biology Program, The Ohio State University, Columbus, OH 43210, USA.
Mathematical Biosciences Institute, The Ohio State University, Columbus, OH 43210, USA
J Cell Sci. 2015 Jun 1;128(11):2106-17. doi: 10.1242/jcs.166538. Epub 2015 Apr 23.
Cdc42 plays a central role in establishing polarity in yeast and animals, yet how polarization of Cdc42 is achieved in response to spatial cues is poorly understood. Using live-cell imaging, we found distinct dynamics of Cdc42 polarization in haploid budding yeast in correlation with two temporal steps of the G1 phase. The position at which the Cdc42-GTP cluster develops changes rapidly around the division site during the first step but becomes stabilized in the second step, suggesting that an axis of polarized growth is determined in mid G1. Cdc42 polarization in the first step and its proper positioning depend on Rsr1 and its GTPase-activating protein (GAP) Bud2. Interestingly, Rga1, a Cdc42 GAP, exhibits transient localization to a site near the bud neck and to the division site during cytokinesis and G1, and this temporal change of Rga1 distribution is necessary for determination of a proper growth site. Mathematical modeling suggests that a proper axis of Cdc42 polarization in haploid cells might be established through a biphasic mechanism involving sequential positive feedback and transient negative feedback.
Cdc42在酵母和动物细胞极性建立过程中发挥核心作用,但对于Cdc42如何响应空间线索实现极化,目前了解甚少。通过活细胞成像,我们发现单倍体出芽酵母中Cdc42极化具有独特的动力学,与G1期的两个时间步骤相关。在第一步中,Cdc42 - GTP簇形成的位置在分裂位点周围迅速变化,但在第二步中变得稳定,这表明极化生长轴在G1中期确定。第一步中的Cdc42极化及其正确定位依赖于Rsr1及其GTP酶激活蛋白(GAP)Bud2。有趣的是,Cdc42 GAP蛋白Rga1在胞质分裂和G1期表现出在芽颈附近和分裂位点的瞬时定位,Rga1分布的这种时间变化对于确定合适的生长位点是必要的。数学模型表明,单倍体细胞中Cdc42极化的正确轴可能通过一种双相机制建立,该机制涉及顺序正反馈和瞬时负反馈。