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Global effects of DNA replication and DNA replication origin activity on eukaryotic gene expression

机译:DNA复制和DNA复制起点活性对真核基因表达的整体影响

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摘要

This report provides a global view of how gene expression is affected by DNA replication. We analyzed synchronized cultures of Saccharomyces cerevisiae under conditions that prevent DNA replication initiation without delaying cell cycle progression. We use a higher-order singular value decomposition to integrate the global mRNA expression measured in the multiple time courses, detect and remove experimental artifacts and identify significant combinations of patterns of expression variation across the genes, time points and conditions. We find that, first, ∼88% of the global mRNA expression is independent of DNA replication. Second, the requirement of DNA replication for efficient histone gene expression is independent of conditions that elicit DNA damage checkpoint responses. Third, origin licensing decreases the expression of genes with origins near their 3′ ends, revealing that downstream origins can regulate the expression of upstream genes. This confirms previous predictions from mathematical modeling of a global causal coordination between DNA replication origin activity and mRNA expression, and shows that mathematical modeling of DNA microarray data can be used to correctly predict previously unknown biological modes of regulation.
机译:该报告提供了有关DNA复制如何影响基因表达的全局视图。我们分析了酿酒酵母在防止DNA复制起始但不延迟细胞周期进程的条件下的同步培养。我们使用高阶奇异值分解来整合在多个时间过程中测得的全局mRNA表达,检测并移除实验性伪像,并确定基因,时间点和条件之间表达变化模式的重要组合。我们发现,首先,约88%的全球mRNA表达与DNA复制无关。其次,DNA复制对于有效组蛋白基因表达的要求与引起DNA损伤检查点反应的条件无关。第三,起源许可降低了起源于其3'末端附近的基因的表达,表明下游起源可以调节上游基因的表达。这证实了从DNA复制起点活动和mRNA表达之间的全局因果关系的数学建模得出的先前预测,并表明DNA微阵列数据的数学建模可用于正确预测以前未知的生物学调节模式。

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