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The Neurospora crassa OS MAPK pathway-activated transcription factor ASL-1 contributes to circadian rhythms in pathway responsive clock-controlled genes

机译:Neurospora crassa OS MAPK途径激活的转录因子ASL-1有助于途径反应性时钟控制基因中的昼夜节律

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The OS-pathway mitogen-activated protein kinase (MAPK) cascade of Neurospora crassa is responsible for adaptation to osmotic stress. Activation of the MAPK, OS-2, leads to the transcriptional induction of many genes involved in the osmotic stress response. We previously demonstrated that there is a circadian rhythm in the phosphorylation of OS-2 under constant non-stress inducing conditions. Additionally, several osmotic stress-induced genes are known to be regulated by the circadian clock. Therefore, we investigated if rhythms in activation of OS-2 lead to circadian rhythms in other known stress responsive targets. Here we identify three more osmotic stress induced genes as rhythmic: cat-1, gcy-1, and gcy-3. These genes encode a catalase and two predicted glycerol dehydrogenases thought to be involved in the production of glycerol. Rhythms in these genes depend upon the oscillator component FRQ. To investigate how the circadian signal is propagated to these stress induced genes, we examined the role of the OS-responsive transcription factor, ASL-1, in mediating circadian gene expression. We find that while the asl-1 transcript is induced by several stresses including an osmotic shock, asl-1 mRNA accumulation is not rhythmic. However, we show that ASL-1 is required for generating normal circadian rhythms of some OS-pathway responsive transcripts (bli-3, ccg-1, cat-1, gcy-1 and gcy-3) in the absence of an osmotic stress. These data are consistent with the possibility that post-transcriptional regulation of ASL-1 by the rhythmically activated OS-2 MAPK could play a role in generating rhythms in downstream targets. (C) 2011 Elsevier Inc. All rights reserved.
机译:景天孢菌的OS途径有丝分裂原激活的蛋白激酶(MAPK)级联负责适应渗透压力。 MAPK OS-2 MAPK的激活导致许多与渗透应激反应有关的基因的转录诱导。我们以前证明,在恒定的非应激诱导条件下,OS-2的磷酸化过程中存在昼夜节律。另外,已知几种渗透胁迫诱导的基因受昼夜节律调节。因此,我们调查了OS-2激活中的节律是否在其他已知的应激反应靶标中导致了昼夜节律。在这里,我们确定了另外三个具有渗透压的基因,它们具有节律性:cat-1,gcy-1和gcy-3。这些基因编码过氧化氢酶和两个预测的甘油脱氢酶,被认为与甘油的产生有关。这些基因的节律取决于振荡器成分FRQ。为了研究昼夜节律信号如何传播到这些应激诱导的基因,我们研究了OS应答转录因子ASL-1在介导昼夜节律基因表达中的作用。我们发现,虽然asl-1转录物是由包括渗透压休克在内的几种压力诱导的,但asl-1 mRNA的积累却不是有节奏的。但是,我们表明,在没有渗透胁迫的情况下,ASL-1是生成某些OS途径反应性转录本(bli-3,ccg-1,cat-1,gcy-1和gcy-3)的正常昼夜节律所必需的。这些数据与节律性激活的OS-2 MAPK转录后调控ASL-1可能在下游靶标产生节律中起作用的可能性一致。 (C)2011 Elsevier Inc.保留所有权利。

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