Department of Molecular and Cellular Pharmacology, University of Miami Miller School of Medicine, Miami, FL 33101-1015.
Department of Biology, Health & Wellness, Miami Dade College, Miami, FL 33176.
Mol Biol Cell. 2021 Oct 1;32(20):ar14. doi: 10.1091/mbc.E20-10-0666. Epub 2021 Jul 21.
The highly conserved small GTPase Cdc42 regulates polarized cell growth and morphogenesis from yeast to humans. We previously reported that Cdc42 activation exhibits oscillatory dynamics at cell tips of cells. Mathematical modeling suggests that this dynamic behavior enables a variety of symmetric and asymmetric Cdc42 activation distributions to coexist in cell populations. For individual wild-type cells, however, Cdc42 distribution is initially asymmetrical and becomes more symmetrical as cell volume increases, enabling bipolar growth activation. To explore whether different patterns of Cdc42 activation are possible in vivo, we examined mutant cells, lacking the Cdc42 GTPase-activating protein (GAP) Rga4. We found that monopolar mother cells divide asymmetrically leading to the emergence of both symmetric and asymmetric Cdc42 distributions in daughter cells. Motivated by different hypotheses that can mathematically reproduce the unequal fate of daughter cells, we used genetic screening to identify mutants that alter the phenotype. We found that the unequal distribution of active Cdc42 GTPase is consistent with an unequal inheritance of another Cdc42 GAP, Rga6, in the two daughter cells. Our findings highlight the crucial role of Cdc42 GAP localization in maintaining consistent Cdc42 activation and growth patterns across generations.
高度保守的小 GTP 酶 Cdc42 调节从酵母到人等生物的极化细胞生长和形态发生。我们之前报道过,细胞尖端的 Cdc42 激活表现出振荡动力学。数学模型表明,这种动态行为使得各种对称和不对称的 Cdc42 激活分布能够在细胞群体中共存。然而,对于单个野生型细胞,Cdc42 分布最初是不对称的,随着细胞体积的增加变得更加对称,从而能够激活两极生长。为了探索体内是否可能存在不同模式的 Cdc42 激活,我们检查了缺失 Cdc42 GTPase 激活蛋白(GAP)Rga4 的 突变细胞。我们发现,单极 母细胞不对称分裂,导致子细胞中出现对称和不对称的 Cdc42 分布。受可以数学再现子细胞不等命运的不同假设的启发,我们使用遗传筛选来鉴定改变 表型的突变体。我们发现,活性 Cdc42 GTP 酶的不均匀分布与另一种 Cdc42 GAP,Rga6,在两个子细胞中的不均匀遗传一致。我们的研究结果强调了 Cdc42 GAP 定位在跨代维持一致的 Cdc42 激活和生长模式方面的关键作用。