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首页> 外文期刊>Current Biology: CB >Nucleocytoplasmic oscillations of the yeast transcription factor Msn2: Evidence for periodic PKA activation
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Nucleocytoplasmic oscillations of the yeast transcription factor Msn2: Evidence for periodic PKA activation

机译:酵母转录因子Msn2的核质振荡:周期性PKA激活的证据。

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摘要

At intermediate intensities, stress induces oscillations in the nucleocytoplasmic shuttling of the transcription factor Msn2 in budding yeast [1]. Activation by stress results in a reversible translocation of Msn2 from the cytoplasm to the nucleus [2]. This translocation is negatively controlled by the cAMP-PKA pathway through Msn2 phosphorylation [2, 3]. Here we show that the nuclear localization signal (NLS) of Msn2 is necessary and sufficient to promote the nucleocytoplasmic oscillations of the transcription factor. Because the NLS is controlled by protein kinase A (PKA) phosphorylation, we use a computational model to investigate the possibility that the cAMP-PKA pathway could function as an oscillator driving the periodic shuttling of Msn2. The model indicates that sustained oscillations of cAMP can indeed occur in a range bounded by two critical values of stress intensity, owing to the negative feedback exerted by PKA on cAMP accumulation. We verify the predictions of the model in mutants by showing that suppressing this negative-feedback loop prevents the oscillatory shuttling but still promotes the stress-induced nuclear localization of Msn2. The physiological significance of Msn2 oscillations is discussed in the light of the frequency encoding of cellular rhythms.
机译:在中等强度下,压力会诱导出芽酵母中转录因子Msn2的核质穿梭振荡[1]。应激激活导致Msn2从细胞质到细胞核的可逆转运[2]。这种移位受cAMP-PKA途径通过Msn2磷酸化的负调控[2,3]。在这里,我们显示Msn2的核定位信号(NLS)是必要和充分的,以促进转录因子的核质振荡。由于NLS受蛋白激酶A(PKA)磷酸化的控制,因此我们使用计算模型来研究cAMP-PKA途径可能充当驱动Msn2周期性穿梭的振荡器的可能性。该模型表明,由于PKA对cAMP积累产生的负反馈,cAMP的持续振荡确实可以在应力强度的两个临界值所限定的范围内发生。我们通过显示抑制这种负反馈回路可防止振荡穿梭,但仍促进应力诱导的Msn2核定位,验证了突变体模型的预测。 Msn2振荡的生理意义讨论了细胞节律的频率编码。

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