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A Safeguard Mechanism Regulates Rho GTPases to Coordinate Cytokinesis with the Establishment of Cell Polarity

机译:一种安全机制调节Rho GTPases协调细胞分裂与细胞极性的建立。

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摘要

The spatiotemporal control of cell polarity is crucial for the development of multicellular organisms and for reliable polarity switches during cell cycle progression in unicellular systems. A tight control of cell polarity is especially important in haploid budding yeast, where the new polarity site (bud site) is established next to the cell division site after cell separation. How cells coordinate the temporal establishment of two adjacent polarity sites remains elusive. Here, we report that the bud neck associated protein Gps1 (GTPase-mediated polarity switch 1) establishes a novel polarity cue that concomitantly sustains Rho1-dependent polarization and inhibits premature Cdc42 activation at the site of cytokinesis. Failure of Gps1 regulation leads to daughter cell death due to rebudding inside the old bud site. Our findings provide unexpected insights into the temporal control of cytokinesis and describe the importance of a Gps1-dependent mechanism for highly accurate polarity switching between two closely connected locations.
机译:细胞极性的时空控制对于多细胞生物的发展以及单细胞系统中细胞周期进程中可靠的极性转换至关重要。严格控制细胞极性在单倍体发芽酵母中尤其重要,在单倍体发芽酵母中,新的极性位点(芽位点)在细胞分离后在细胞分裂位点附近建立。细胞如何协调两个相邻极性位点的时间建立仍然难以捉摸。在这里,我们报告说,芽颈相关蛋白Gps1(GTPase介导的极性开关1)建立了一个新的极性提示,该提示同时维持Rho1依赖性极化并抑制胞质分裂位点的过早Cdc42激活。 Gps1调控的失败会导致子细胞死亡,原因是其在旧芽部位内重新萌芽。我们的发现为细胞分裂的时间控制提供了意想不到的见解,并描述了在两个紧密相连的位置之间进行高精度极性转换的Gps1依赖性机制的重要性。

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