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GTPase-Activating Proteins for Cdc42

机译:Cdc42的GTPase激活蛋白

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The Rho-type GTPase, Cdc42, has been implicated in a variety of functions in the yeast life cycle, including septin organization for cytokinesis, pheromone response, and haploid invasive growth. A group of proteins called GTPase-activating proteins (GAPs) catalyze the hydrolysis of GTP to GDP, thereby inactivating Cdc42. At the time this study began, there was one known GAP, Bem3, and one putative GAP, Rga1, for Cdc42. We identified another putative GAP for Cdc42 and named it Rga2 (Rho GTPase-activating protein 2). We confirmed by genetic and biochemical criteria that Rga1, Rga2, and Bem3 act as GAPs for Cdc42. A detailed characterization of Rga1, Rga2, and Bem3 suggested that they regulate different subsets of Cdc42 function. In particular, deletion of the individual GAPs conferred different phenotypes. For example, deletion of RGA1, but not RGA2 or BEM3, caused hyperinvasive growth. Furthermore, overproduction or loss of Rga1 and Rga2, but not Bem3, affected the two-hybrid interaction of Cdc42 with Ste20, a p21-activated kinase (PAK) kinase required for haploid invasive growth. These results suggest Rga1, and possibly Rga2, facilitate the interaction of Cdc42 with Ste20 to mediate signaling in the haploid invasive growth pathway. Deletion of BEM3 resulted in cells with severe morphological defects not observed in rga1Δ or rga2Δ strains. These data suggest that Bem3 and, to a lesser extent, Rga1 and Rga2 facilitate the role of Cdc42 in septin organization. Thus, it appears that the GAPs play a role in modulating specific aspects of Cdc42 function. Alternatively, the different phenotypes could reflect quantitative rather than qualitative differences in GAP activity in the mutant strains.
机译:Rho型GTPase Cdc42与酵母生命周期中的多种功能有关,包括用于细胞分裂,信息素反应和单倍体侵入性生长的septin组织。一组称为GTP酶激活蛋白(GAPs)的蛋白催化GTP水解为GDP,从而使Cdc42失活。在这项研究开始时,对于Cdc42,存在一个已知的GAP(Bem3)和一个假定的GAP(Rga1)。我们为Cdc42确定了另一个推定的GAP,并将其命名为Rga2(Rho GTPase激活蛋白2)。我们通过遗传和生化标准确认Rga1,Rga2和Bem3充当Cdc42的GAP。 Rga1,Rga2和Bem3的详细表征表明它们调节Cdc42功能的不同子集。特别地,个体GAP的缺失赋予不同的表型。例如,删除 RGA1 而不删除 RGA2 BEM3 会引起过度侵袭性生长。此外,Rga1和Rga2(而非Bem3)的过量生产或损失影响了Cdc42与Ste20(单倍体侵入性生长所需的p21激活的激酶(PAK)激酶)的两个杂交相互作用。这些结果表明Rga1,可能还有Rga2,有助于Cdc42与Ste20的相互作用,以介导单倍体侵入性生长途径中的信号传导。删除 BEM3 导致细胞具有严重的形态缺陷,在 rga1 Δ或 rga2 Δ菌株中未观察到。这些数据表明Bem3,以及在较小程度上Rga1和Rga2促进了Cdc42在Septin组织中的作用。因此,似乎GAP在调节Cdc42功能的特定方面发挥作用。或者,不同的表型可以反映突变菌株中GAP活性的定量而不是定性差异。

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