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Circadian Control of Messenger RNA Stability. Association with a Sequence-Specific Messenger RNA Decay Pathway1[w]

机译:信使RNA稳定性的昼夜节律控制。与特定于序列的信使RNA衰变途径1 [w]的关联

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摘要

Transcriptional and posttranscriptional regulation are well-established mechanisms for circadian gene expression. Among the latter, differential messenger RNA (mRNA) stability has been hypothesized to control gene expression in response to the clock. However, direct proof that the rate of mRNA turnover can be regulated by the clock is lacking. Previous microarray expression data for unstable mRNAs in Arabidopsis (Arabidopsis thaliana) revealed that mRNA instability is associated with a group of genes controlled by the circadian clock. Here, we show that CCR-LIKE (CCL) and SENESCENCE ASSOCIATED GENE 1 transcripts are differentially regulated at the level of mRNA stability at different times of day. In addition, the changes in CCL mRNA stability continue under free-running conditions, indicating that it is controlled by the Arabidopsis circadian clock. Furthermore, we show that these mRNAs are targets of the mRNA degradation pathway mediated by the downstream (DST) instability determinant. Disruption of the DST-mediated decay pathway in the dst1 mutant leads to aberrant circadian mRNA oscillations that correlate with alterations of the half-life of CCL mRNA relative to parental plants in the morning and afternoon. That this is due to an effect on the circadian control is evidenced by mRNA decay experiments carried out in continuous light. Finally, we show that the defects exhibited by dst mutants are reflected by an impact on circadian regulation at the whole plant level. Together, these results demonstrate that regulation of mRNA stability is important for clock-controlled expression of specific genes in Arabidopsis. Moreover, these data uncover a connection between circadian rhythms and a sequence-specific mRNA decay pathway.
机译:转录和转录后调控是昼夜节律基因表达的公认机制。在后者中,已假设差异信使RNA(mRNA)的稳定性可响应时钟控制基因表达。然而,缺乏直接证明可以通过时钟调节mRNA更新率的证据。拟南芥(Arabidopsis thaliana)中不稳定mRNA的先前微阵列表达数据显示,mRNA的不稳定性与昼夜节律控制的一组基因有关。在这里,我们显示CCR样(CCL)和感觉相关基因1转录本在一天的不同时间在mRNA稳定水平受到差异调节。此外,CCL mRNA稳定性的变化在自由运行条件下继续存在,这表明它受拟南芥生物钟的控制。此外,我们表明这些mRNA是下游(DST)不稳定决定因素介导的mRNA降解途径的目标。 DST介导的dst1突变体中DST介导的衰变途径的破坏导致昼夜节律性mRNA振荡,这与早晨和下午相对于亲本植物的CCL mRNA的半衰期改变相关。在连续光下进行的mRNA衰变实验证明了这是由于对昼夜节律控制的影响。最后,我们表明dst突变体表现出的缺陷反映在整个植物水平上对昼夜节律的影响。总之,这些结果表明,mRNA稳定性的调节对于拟南芥中特定基因的时钟控制表达非常重要。此外,这些数据揭示了昼夜节律与序列特异性mRNA衰变途径之间的联系。

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