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Integrative Analysis of Circadian Transcriptome and Metabolic Network Reveals the Role of De Novo Purine Synthesis in Circadian Control of Cell Cycle

机译:昼夜节律转录组和代谢网络的综合分析揭示了从头嘌呤合成在昼夜节律控制细胞周期中的作用。

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摘要

Metabolism is the major output of the circadian clock in many organisms. We developed a computational method to integrate both circadian gene expression and metabolic network. Applying this method to zebrafish circadian transcriptome, we have identified large clusters of metabolic genes containing mostly genes in purine and pyrimidine metabolism in the metabolic network showing similar circadian phases. Our metabolomics analysis found that the level of inosine 5'-monophosphate (IMP), an intermediate metabolite in de novo purine synthesis, showed significant circadian oscillation in larval zebrafish. We focused on IMP dehydrogenase (impdh), a rate-limiting enzyme in de novo purine synthesis, with three circadian oscillating gene homologs: impdh1a, impdh1b and impdh2. Functional analysis revealed that impdh2 contributes to the daily rhythm of S phase in the cell cycle while impdh1a contributes to ocular development and pigment synthesis. The three zebrafish homologs of impdh are likely regulated by different circadian transcription factors. We propose that the circadian regulation of de novo purine synthesis that supplies crucial building blocks for DNA replication is an important mechanism conferring circadian rhythmicity on the cell cycle. Our method is widely applicable to study the impact of circadian transcriptome on metabolism in complex organisms.
机译:在许多生物中,代谢是生物钟的主要输出。我们开发了一种整合昼夜节律基因表达和代谢网络的计算方法。将此方法应用于斑马鱼的昼夜节律转录组,我们已经确定了代谢基因的大簇,其中大部分包含嘌呤和嘧啶代谢的基因,在代谢网络中表现出相似的昼夜节律。我们的代谢组学分析发现,从头嘌呤合成中的中间代谢产物肌苷5'-单磷酸(IMP)的水平在幼虫斑马鱼中显示出明显的昼夜节律振荡。我们专注于IMP脱氢酶(impdh),一种从头嘌呤合成的限速酶,具有三个昼夜节律振荡基因同源物:impdh1a,impdh1b和impdh2。功能分析表明,impdh2有助于细胞周期中S期的日常节律,而impdh1a有助于眼部发育和色素合成。 impdh的三个斑马鱼同源物可能受不同的昼夜节律转录因子调控。我们提出,从头嘌呤合成的昼夜节律调节为DNA复制提供了重要的组成部分,这是赋予细胞周期昼夜节律性的重要机制。我们的方法可广泛用于研究昼夜节律转录组对复杂生物代谢的影响。

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