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USF 结合序列从 HS4 绝缘子元件上对脊椎动物复制子施加早期复制时间。

USF binding sequences from the HS4 insulator element impose early replication timing on a vertebrate replicator.

机构信息

Institut Jacques Monod, Centre National de la Recherche Scientifique, Université Paris Diderot, Paris, France.

出版信息

PLoS Biol. 2012;10(3):e1001277. doi: 10.1371/journal.pbio.1001277. Epub 2012 Mar 6.

Abstract

The nuclear genomes of vertebrates show a highly organized program of DNA replication where GC-rich isochores are replicated early in S-phase, while AT-rich isochores are late replicating. GC-rich regions are gene dense and are enriched for active transcription, suggesting a connection between gene regulation and replication timing. Insulator elements can organize independent domains of gene transcription and are suitable candidates for being key regulators of replication timing. We have tested the impact of inserting a strong replication origin flanked by the β-globin HS4 insulator on the replication timing of naturally late replicating regions in two different avian cell types, DT40 (lymphoid) and 6C2 (erythroid). We find that the HS4 insulator has the capacity to impose a shift to earlier replication. This shift requires the presence of HS4 on both sides of the replication origin and results in an advance of replication timing of the target locus from the second half of S-phase to the first half when a transcribed gene is positioned nearby. Moreover, we find that the USF transcription factor binding site is the key cis-element inside the HS4 insulator that controls replication timing. Taken together, our data identify a combination of cis-elements that might constitute the basic unit of multi-replicon megabase-sized early domains of DNA replication.

摘要

脊椎动物的核基因组显示出高度组织化的 DNA 复制程序,其中富含 GC 的同型异序区在 S 期早期复制,而富含 AT 的同型异序区则在晚期复制。富含 GC 的区域基因密度高,转录活性增强,表明基因调控与复制时间之间存在联系。绝缘子元件可以组织独立的基因转录域,是复制时间调控的关键候选元件。我们已经测试了在两种不同的禽类细胞类型 DT40(淋巴样)和 6C2(红细胞样)中,插入一个由β-珠蛋白 HS4 绝缘子侧翼的强复制起点对自然晚复制区域复制时间的影响。我们发现 HS4 绝缘子具有使复制时间提前的能力。这种转变需要复制起点两侧都有 HS4,并且当附近有转录基因时,靶基因座的复制时间从 S 期的后半段提前到前半段。此外,我们发现 USF 转录因子结合位点是 HS4 绝缘子内控制复制时间的关键顺式元件。总之,我们的数据确定了一组顺式元件,它们可能构成多复制子兆碱基大小的 DNA 复制早期域的基本单元。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b13/3295818/5abc60eb60dc/pbio.1001277.g001.jpg

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