首页> 外文OA文献 >Genome-wide analysis reveals extensive functional interaction between DNA replication initiation and transcription in the genome of Trypanosoma brucei.
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Genome-wide analysis reveals extensive functional interaction between DNA replication initiation and transcription in the genome of Trypanosoma brucei.

机译:全基因组分析揭示了布鲁氏锥虫基因组中DNA复制起始和转录之间的广泛功能相互作用。

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摘要

Identification of replication initiation sites, termed origins, is a crucial step in understanding genome transmission in any organism. Transcription of the Trypanosoma brucei genome is highly unusual, with each chromosome comprising a few discrete transcription units. To understand how DNA replication occurs in the context of such organization, we have performed genome-wide mapping of the binding sites of the replication initiator ORC1/CDC6 and have identified replication origins, revealing that both localize to the boundaries of the transcription units. A remarkably small number of active origins is seen, whose spacing is greater than in any other eukaryote. We show that replication and transcription in T. brucei have a profound functional overlap, as reducing ORC1/CDC6 levels leads to genome-wide increases in mRNA levels arising from the boundaries of the transcription units. In addition, ORC1/CDC6 loss causes derepression of silent Variant Surface Glycoprotein genes, which are critical for host immune evasion.
机译:复制起始位点(称为起源)的鉴定是理解任何生物体中基因组传递的关键步骤。布氏锥虫基因组的转录非常不寻常,每个染色体都包含几个离散的转录单位。为了了解在这种组织的背景下DNA复制是如何发生的,我们对复制起始剂ORC1 / CDC6的结合位点进行了全基因组映射,并确定了复制起点,发现两者均位于转录单位的边界。可以看到活动起源的数量非常少,其活动间隔比其他任何真核生物都大。我们显示复制和转录在布鲁氏杆菌中具有深远的功能重叠,因为减少ORC1 / CDC6的水平会导致全基因组水平的转录单位边界的mRNA水平增加。此外,ORC1 / CDC6的丢失会导致沉默的变异表面糖蛋白基因的表达降低,这对宿主免疫逃避至关重要。

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