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Analysis of the thresholds for transcriptional activation by the yeast MAP kinases Fus3 and Kss1

机译:酵母MAP激酶Fus3和Kss1转录激活的阈值分析

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Signaling in the pheromone response pathway of budding yeast activates two distinct MAP kinases (MAPKs), Fus3 and Kss1. Either MAPK alone can mediate pheromone-induced transcription, but it has been unclear to what degree each one contributes to transcriptional output in wild-type cells. Here, we report that transcription reflects the ratio of active to inactive MAPK, and not simply the level of active MAPK. For Kss1 the majority of MAPK molecules must be converted to the active form, whereas for Fus3 only a small minority must be activated. These different activation thresholds reflect two opposing effects of each MAPK, in which the inactive forms inhibit transcription, whereas the active forms promote transcription. Moreover, negative feedback from Fus3 limits activation of Kss1 so that it does not meet its required threshold in wild-type cells but does so only when hyperactivated in cells lacking Fus3. The results suggest that the normal transcriptional response involves asymmetric contributions from the two MAPKs, in which pheromone signaling reduces the negative effect of Kss1 while increasing the positive effect of Fus3. These findings reveal new functional distinctions between these MAPKs, and help illuminate how inhibitory functions shape positive pathway outputs in both pheromone and filamentation pathways.
机译:发芽酵母的信息素反应途径中的信号激活了两个不同的MAP激酶(MAPK)Fus3和Kss1。单独的MAPK均可介导信息素诱导的转录,但目前尚不清楚每个人在多大程度上促进了野生型细胞的转录输出。在这里,我们报道转录反映的是活性MAPK与非活性MAPK的比例,而不仅仅是活性MAPK的水平。对于Kss1,大多数MAPK分子必须转化为活性形式,而对于Fus3,仅需要激活一小部分。这些不同的激活阈值反映了每个MAPK的两个相反的作用,其中非活性形式抑制转录,而活性形式促进转录。此外,来自Fus3的负反馈限制了Kss1的激活,因此它在野生型细胞中不满足其所需的阈值,而仅在缺少Fus3的细胞中被过度激活时才达到。结果表明正常的转录反应涉及两个MAPKs的不对称贡献,其中信息素信号传导减少了Kss1的负面影响,同时增加了Fus3的正面影响。这些发现揭示了这些MAPK之间的新功能差异,并有助于阐明抑制功能如何塑造信息素和丝化途径中的阳性途径输出。

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