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Pre-replication complex proteins assemble at regions of low nucleosome occupancy within the Chinese hamster dihydrofolate reductase initiation zone

机译:复制前的复杂蛋白聚集在中国仓鼠二氢叶酸还原酶起始区内的核小体占有率低的区域。

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Genome-scale mapping of pre-replication complex proteins has not been reported in mammalian cells. Poor enrichment of these proteins at specific sites may be due to dispersed binding, poor epitope availability or cell cycle stage-specific binding. Here, we have mapped sites of biotin-tagged ORC and MCM protein binding in G1-synchronized populations of Chinese hamster cells harboring amplified copies of the dihydrofolate reductase (DHFR) locus, using avidin-affinity purification of biotinylated chromatin followed by high-density microarray analysis across the DHFR locus. We have identified several sites of significant enrichment for both complexes distributed throughout the previously identified initiation zone. Analysis of the frequency of initiations across stretched DNA fibers from the DHFR locus confirmed a broad zone of de-localized initiation activity surrounding the sites of ORC and MCM enrichment. Mapping positions of mononucleosomal DNA empirically and computing nucleosome-positioning information in silico revealed that ORC and MCM map to regions of low measured and predicted nucleosome occupancy. Our results demonstrate that specific sites of ORC and MCM enrichment can be detected within a mammalian intitiation zone, and suggest that initiation zones may be regions of generally low nucleosome occupancy where flexible nucleosome positioning permits flexible pre-RC assembly sites.
机译:复制前复合蛋白的基因组规模作图尚未在哺乳动物细胞中报道。这些蛋白质在特定位点的富集不足可能是由于分散的结合,差的表位利用率或细胞周期阶段特异性结合。在这里,我们绘制了生物素标记的ORC和MCM蛋白结合位点的位置,它们使用生物素化染色质的亲和素亲和纯化,然后通过高密度微阵列,在具有二氢叶酸还原酶(DHFR)基因座扩增拷贝的中国仓鼠细胞中进行了G1同步。 DHFR基因座分析。我们已经确定了分布在先前确定的起始区域内的两种复合物的显着富集的几个位点。对来自DHFR基因座的拉伸DNA纤维的起始频率的分析证实,ORC和MCM富集位点周围存在着广泛的离域起始活性区域。凭经验绘制单核糖体DNA的位置并在计算机中计算核小体的定位信息表明,ORC和MCM映射到测得和预测的核小体占有率较低的区域。我们的结果表明,可以在哺乳动物的启动区内检测到ORC和MCM富集的特定位点,并表明启动区可能是核小体占用率通常较低的区域,其中灵活的核小体定位允许灵活的RC前组装位点。

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