首页> 外文会议>International Workshop on Bioinformatics and Systems Biology >DIFFERENT GROUPS OF METABOLIC GENES CLUSTER AROUND EARLY AND LATE FIRING ORIGINS OF REPLICATION IN BUDDING YEAST
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DIFFERENT GROUPS OF METABOLIC GENES CLUSTER AROUND EARLY AND LATE FIRING ORIGINS OF REPLICATION IN BUDDING YEAST

机译:不同群体的代谢基因集群在早期和晚期射击萌芽酵母复制的起源

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DNA replication is a fundamental process that is tightly regulated during the cell cycle. In budding yeast it starts from multiple origins of replication and proceeds in a timely fashion according to a reproducible temporal program until the entire DNA is replicated exactly once per cell cycle. In this program an origin seems to have an inherent firing probability at a specific time in S-phase that is conserved over the population. However, what exactly determines the origin initiation time remains obscure. In this work, we analyze the gene content that clusters around replication origins following the assumption that inherent origin properties that determine staggered initiation times could potentially be mirrored in the close origin proximity. We perform a Gene Ontology term enrichment test and find that metabolic genes are significantly over-represented in the regions that are close to the starting points of DNA replication. Furthermore, functional analysis also reveals that catabolic genes cluster around early firing origins, whereas anabolic genes can rather be found in the proximity of late firing origins of replication. We speculate that, in budding yeast, gene function around replication origins correlates with their intrinsic probability to initiate DNA replication at a given point in S-phase.
机译:DNA复制是在细胞周期内紧密调节的基本过程。在萌芽酵母中,它从复制的多个起源开始,并根据可重复的时间程序以及时的方式进行,直到每个细胞周期完全复制整个DNA。在该计划中,原点似乎在S相中的特定时间具有固有的射击概率,这些概率在群体上被保守。但是,究竟是什么决定了原点启动时间仍然模糊。在这项工作中,我们分析了在假设确定交错启动时间的固有的原点属性之后围绕复制起源的基因含量可以在近摄原点接近镜像。我们进行基因本体论富集试验,并发现代谢基因在接近DNA复制的起始点的区域中显着过度地表示。此外,功能分析还揭示了早期烧制起源周围的分解代谢基因,而合成代谢基因宁可在晚期烧制的复制起源的附近找到。我们推测,在萌芽酵母中,复制围绕复制源的基因功能与它们的内在概率相关,以在S相中发起DNA复制。

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