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DNA replication-timing analysis of human chromosome 22 at high resolution and different developmental states

机译:高分辨率和不同发育状态下人类22号染色体的DNA复制时序分析

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摘要

Duplication of the genome during the S phase of the cell cycle does not occur simultaneously; rather, different sequences are replicated at different times. The replication timing of specific sequences can change during development; however, the determinants of this dynamic process are poorly understood. To gain insights into the contribution of developmental state, genomic sequence, and transcriptional activity to replication timing, we investigated the timing of DNA replication at high resolution along an entire human chromosome (chromosome 22) in two different cell types. The pattern of replication timing was correlated with respect to annotated genes, gene expression, novel transcribed regions of unknown function, sequence composition, and cytological features. We observed that chromosome 22 contains regions of early- and late-replicating domains of 100 kb to 2 Mb, many (but not all) of which are associated with previously described chromosomal bands. In both cell types, expressed sequences are replicated earlier than nontranscribed regions. However, several highly transcribed regions replicate late. Overall, the DNA replication-timing profiles of the two different cell types are remarkably similar, with only nine regions of difference observed. In one case, this difference reflects the differential expression of an annotated gene that resides in this region. Novel transcribed regions with low coding potential exhibit a strong propensity for early DNA replication. Although the cellular function of such transcripts is poorly understood, our results suggest that their activity is linked to the replication-timing program.
机译:细胞周期S期的基因组复制不是同时发生的。而是在不同的时间复制不同的序列。在开发过程中,特定序列的复制时间可能会有所不同。但是,人们对这个动态过程的决定因素了解得很少。为了深入了解发育状态,基因组序列和转录活性对复制时机的贡献,我们研究了在两种不同细胞类型中沿整个人类染色体(22号染色体)高分辨率进行DNA复制的时机。复制时机的模式与注释的基因,基因表达,未知功能的新转录区域,序列组成和细胞学特征相关。我们观察到22号染色体包含100 kb至2 Mb的早期和晚期复制域区域,其中许多(但不是全部)与先前描述的染色体带相关。在两种细胞类型中,表达的序列都比非转录的区域更早复制。但是,几个高度转录的区域复制较晚。总体而言,两种不同细胞类型的DNA复制时序图非常相似,仅观察到9个差异区域。在一种情况下,这种差异反映了位于该区域的带注释基因的差异表达。具有低编码潜能的新型转录区域表现出很强的早期DNA复制倾向。尽管人们对这种转录本的细胞功能了解甚少,但我们的研究结果表明,它们的活性与复制时机程序有关。

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