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Substitutions in the pheromone-responsive Gbeta protein of Saccharomyces cerevisiae confer a defect in recovery from pheromone treatment.

机译:酿酒酵母的信息素响应性Gbeta蛋白的替代赋予从信息素治疗中恢复的缺陷。

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摘要

The pheromone-responsive Galpha protein of Saccharomyces cerevisiae, Gpa1p, stimulates an adaptive mechanism that downregulates the mating signal. In a genetic screen designed to identify signaling elements required for Gpa1p-mediated adaptation, a large collection of adaptive-defective (Adp-) mutants were recovered. Of the 49 mutants characterized thus far, approximately three-quarters exhibit a dominant defect in the negative regulation of the pheromone response. Eight of the dominant Adp- mutations showed tight linkage to the gene encoding the pheromone-responsive Gbeta, STE4. Sequence analysis of the STE4 locus in the relevant mutant strains revealed seven novel STE4 alleles, each of which was shown to disrupt proper regulation of the pheromone response. Although the STE4 mutations had only minor effects on basal mating pathway activity, the mutant forms of Gbeta dramatically affected the ability of the cell to turn off the mating response after exposure to pheromone. Moreover, the signaling activity of the aberrant Gbetagamma subunits was suppressed by G322E, a mutant form of Gpa1p that blocks the pheromone response by sequestering Gbetagamma, but not by E364K, a hyperadaptive form of Gpa1p. On the basis of these observations, we propose that Gpa1p-mediated adaptation involves the binding of an unknown negative regulator to Gbetagamma.
机译:酿酒酵母的信息素响应Galpha蛋白Gpa1p刺激下调交配信号的适应性机制。在旨在鉴定Gpa1p介导的适应所需的信号传导元件的遗传筛选中,回收了大量的适应性缺陷(Adp-)突变体。迄今表征的49个突变体中,大约四分之三在信息素反应的负调控中表现出主要缺陷。八个显着的Adp突变显示与编码信息素反应性Gbeta STE4的基因紧密连接。相关突变菌株中STE4基因座的序列分析揭示了七个新的STE4等位基因,每个等位基因都显示出破坏了信息素反应的适当调节。尽管STE4突变对基础交配途径的活性影响很小,但Gbeta的突变形式显着影响了细胞暴露于信息素后关闭交配反应的能力。此外,异常的Gbetagamma亚基的信号传导活性受到G322E(一种通过隔离Gbetagamma阻断信息素应答的Gpa1p突变形式)的抑制,但没有受到E364K(Gpa1p的超自适应形式)的抑制。基于这些观察,我们建议Gpa1p介导的适应涉及一个未知的负调节剂与Gbetagamma的绑定。

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