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Effect of the Pheromone-Responsive Gα and Phosphatase Proteins of Saccharomyces cerevisiae on the Subcellular Localization of the Fus3 Mitogen-Activated Protein Kinase

机译:酿酒酵母的信息素响应Gα和磷酸酶蛋白对Fus3丝裂原活化蛋白激酶亚细胞定位的影响。

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摘要

The mating-specific Gα protein of Saccharomyces cerevisiae, Gpa1, stimulates adaptation to pheromone by a mechanism independent of Gβγ sequestration. Genetic evidence suggests that Gpa1 targets the Fus3 mitogen-activated protein kinase, and it has recently been shown that the two proteins interact in cells responding to pheromone. To test the possibility that Gpa1 downregulates the mating signal by affecting the localization of Fus3, we created a Fus3-green fluorescent protein (GFP) fusion protein. In vegetative cells, Fus3-GFP was found in both the cytoplasm and the nucleus. Pheromone stimulated a measurable increase in the ratio of nuclear to cytoplasmic Fus3-GFP. In contrast, the relative level of nuclear Fus3-GFP decreased as cells recovered from pheromone arrest and did not increase when cells adapted to chronic stimulus were challenged again. Accumulation of Fus3-GFP in the nuclei of stimulated cells was also inhibited by overexpression of either wild-type Gpa1, the E364K hyperadaptive mutant form of Gpa1, or the Msg5 dually specific phosphatase. The effects of Gpa1 and Msg5 on Fus3 are partially interdependent. In a genetic screen for adaptive defective mutants, a nonsense allele of the nucleocytoplasmic transport receptor, Kap104, was identified. Truncation of the Kap104 cargo-binding domain blocked the effect of both Gpa1E364K and Msg5 on Fus3-GFP localization. Based on these results, we propose that Gpa1 and Msg5 work in concert to downregulate the mating signal and that they do so by inhibiting the pheromone-induced increase of Fus3 in the nucleus. Kap104 is required for the Gα/phosphatase-mediated effect on Fus3 localization.
机译:酿酒酵母的交配特异性Gα蛋白Gpa1通过独立于Gβγ螯合的机制刺激对信息素的适应。遗传证据表明,Gpa1靶向Fus3丝裂原激活的蛋白激酶,最近显示这两种蛋白在对信息素有反应的细胞中相互作用。为了测试Gpa1通过影响Fus3的定位来下调交配信号的可能性,我们创建了Fus3-绿色荧光蛋白(GFP)融合蛋白。在营养细胞中,在细胞质和细胞核中都发现了Fus3-GFP。信息素刺激了核与细胞质Fus3-GFP的比率的可测量的增加。相反,随着从信息素停滞中恢复的细胞,Fus3-GFP核的相对水平降低,而当适应慢性刺激的细胞再次受到攻击时,其相对水平则没有增加。野生型Gpa1,Gpa1的E364K超自适应突变体形式或Msg5双特异性磷酸酶的过表达也抑制了Fus3-GFP在刺激细胞核中的积累。 Gpa1和Msg5对Fus3的影响是部分相互依赖的。在针对适应性缺陷突变体的遗传筛选中,鉴定了核质转运受体Kap104的无意义等位基因。 Kap104货物绑定域的截断阻止了Gpa1 E364K 和Msg5对Fus3-GFP定位的影响。基于这些结果,我们建议Gpa1和Msg5协同工作以下调交配信号,并且它们通过抑制信息素诱导的核中Fus3的增加来实现。 Kap104是Gα/磷酸酶介导的对Fus3定位的作用所必需的。

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