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首页> 外文期刊>Molecular Microbiology >The Neurospora circadian clock regulates a transcription factor that controls rhythmic expression of the output eas(ccg-2) gene.
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The Neurospora circadian clock regulates a transcription factor that controls rhythmic expression of the output eas(ccg-2) gene.

机译:Neurospora昼夜节律时钟调节控制输出eas(ccg-2)基因节律表达的转录因子。

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The circadian clock provides a link between an organism's environment and its behaviour, temporally phasing the expression of genes in anticipation of daily environmental changes. Input pathways sense environmental information and interact with the clock to synchronize it to external cycles, and output pathways read out from the clock to impart temporal control on downstream targets. Very little is known about the regulation of outputs from the clock. In Neurospora crassa, the circadian clock transcriptionally regulates expression of the clock-controlled genes, including the well-characterized eas(ccg-2) gene. Dissection of the eas(ccg-2) gene promoter previously localized a 68 bp sequence containing an activating clock element (ACE) that is both necessary and sufficient for rhythmic activation of transcription by the circadian clock. Using electrophoretic mobility shift assays (EMSAs), we have identified light-regulated nuclear protein factors that bind specifically to the ACE in a time-of-day-dependent fashion, consistent with their role in circadian regulation of expression of eas(ccg-2). Nucleotides in the ACE that interact with the protein factors were determined using interference binding assays, and deletion of the core interacting sequences affected, but did not completely eliminate, rhythmic accumulation of eas(ccg-2) mRNA in vivo, whereas deletion of the entire ACE abolished the rhythm. These data indicate that redundant binding sites for the protein factors that promote eas(ccg-2) rhythms exist within the 68 bp ACE. The ACE binding complexes formed using protein extracts from cells with lesions in central components of the Neurospora circadian clock were identical to those formed with extracts from wild-type cells, indicating that other proteins directly control eas(ccg-2) rhythmic expression. These data suggest that the Neurospora crassa circadian clock regulates an unknown transcription factor, which in turn activates the expression of eas(ccg-2) at specific times of the day.
机译:昼夜节律时钟在生物体的环境与其行为之间建立联系,在预期每日环境变化的过程中临时调整基因的表达。输入路径感应环境信息并与时钟交互以使其与外部周期同步,而输出路径则从时钟中读出以对下游目标进行时间控制。关于时钟输出的调节知之甚少。在神经孢霉中,昼夜节律时钟调节受时钟控制的基因的表达,包括特征明确的eas(ccg-2)基因。解剖eas(ccg-2)基因启动子之前已定位了一个68 bp的序列,其中包含一个激活时钟元件(ACE),这对于通过生物钟进行节奏性转录激活既是必需的又是足够的。使用电泳迁移率变动分析(EMSA),我们确定了光调节的核蛋白因子,它们以一天依赖的方式与ACE特异性结合,与它们在eas(ccg-2)昼夜调节中的作用一致)。使用干扰结合试验确定了与蛋白质因子相互作用的ACE中的核苷酸,并且删除了相互作用的核心相互作用序列,但并未完全消除体内eas(ccg-2)mRNA的节律性积累,而整个序列的缺失ACE取消了节奏。这些数据表明在68 bp ACE中存在促进eas(ccg-2)节律的蛋白质因子的多余结合位点。使用从具有神经节菌生物钟的中央成分受损的细胞中提取的蛋白质形成的ACE结合复合物与使用野生型细​​胞中的提取物形成的ACE结合复合物相同,这表明其他蛋白质直接控制eas(ccg-2)的节律性表达。这些数据表明,Neurospora crassa昼夜节律时钟调节未知的转录因子,从而在一天的特定时间激活eas(ccg-2)的表达。

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