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The pheromone-induced nuclear accumulation of the Fus3 MAPK in yeast depends on its phosphorylation state and on Dig1 and Dig2

机译:信息素诱导酵母中Fus3 MAPK的核积累取决于其磷酸化状态以及Dig1和Dig2

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Background Like mammalian MAP kinases, the mating-specific Fus3 MAPK of yeast accumulates in the nuclei of stimulated cells. Because Fus3 does not appear to be subjected to active nucleo-cytoplasmic transport, it is not clear how its activation by mating pheromone effects the observed change in its localization. One possibility is that the activation of Fus3 changes its affinity for nuclear and cytoplasmic tethers. Results Dig1, Dig2, and Ste12 are nuclear proteins that interact with Fus3. We found that the pheromone-induced nuclear accumulation of a Fus3-GFP reporter is reduced in cells lacking Dig1 or Dig2, whereas Fus3T180AY182A-GFP localization was unaffected by the absence of these proteins. This suggests that Dig1 and Dig2 contribute to the retention of phosphorylated Fus3 in the nucleus. Moreover, overexpression of Ste12 caused the hyper-accumulation of Fus3-GFP (but not Fus3T180AY182A-GFP) in the nuclei of pheromone-treated cells, suggesting that Ste12 also plays a role in the nuclear retention of phosphorylated Fus3, either by directly interacting with it or by transcribing genes whose protein products are Fus3 tethers. We have previously reported that overexpression of the Msg5 phosphatase inhibits the nuclear localization of Fus3. Here we show that this effect depends on the phosphatase activity of Msg5, and provide evidence that both nuclear and cytoplasmic Msg5 can affect the localization of Fus3. Conclusion Our data are consistent with a model in which the pheromone-induced phosphorylation of Fus3 increases its affinity for nuclear tethers, which contributes to its nuclear accumulation and is antagonized by Msg5.
机译:背景技术与哺乳动物的MAP激酶一样,酵母的交配特异性Fus3 MAPK积累在受激细胞的细胞核中。因为Fus3似乎没有进行主动的核质转运,所以尚不清楚它通过交配信息素的激活如何影响观察到的其定位变化。一种可能性是Fus3的激活会改变其对核和细胞质系链的亲和力。结果Dig1,Dig2和Ste12是与Fus3相互作用的核蛋白。我们发现,在缺乏Dig1或Dig2的细胞中,信息素诱导的Fus3-GFP报告子的核积累减少,而Fus3 T180AY182A -GFP的定位不受这些蛋白的缺乏的影响。这表明Dig1和Dig2有助于磷酸化Fus3在细胞核中的保留。此外,Ste12的过表达引起了在信息素处理过的细胞核中Fus3-GFP(但不是Fus3 T180AY182A -GFP)的过度积累,这表明Ste12还在细胞核保留中起作用。通过与Fus3直接相互作用或转录其蛋白质产物为Fus3系链的基因来磷酸化Fus3。我们以前曾报道过,Msg5磷酸酶的过表达抑制Fus3的核定位。在这里,我们证明了这种效应取决于M​​sg5的磷酸酶活性,并提供了核和细胞质Msg5均可影响Fus3定位的证据。结论我们的数据与信息素诱导的Fus3磷酸化增加其对核束缚物的亲和力,促进其核积累并被Msg5拮抗的模型是一致的。

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