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The effect of the intra-S-phase checkpoint on origins of replication in human cells.

机译:S阶段内检查点对人类细胞复制起点的影响。

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Although many chemotherapy drugs activate the intra-S-phase checkpoint pathway to block S-phase progression, not much is known about how and where the intra-S-phase checkpoint regulates origins of replication in human chromosomes. A genomic analysis of replication in human cells in the presence of hydroxyurea (HU) revealed that only the earliest origins fire, but the forks stall within 2 kb and neighboring clusters of dormant origins are activated. The initiation events are located near expressed genes with a preference for transcription start and end sites, and when they are located in intergenic regions they are located near regulatory factor-binding regions (RFBR). The activation of clustered neo-origins by HU suggests that there are many potential replication initiation sites in permissive parts of the genome, most of which are not used in a normal S phase. Consistent with this redundancy, we see multiple sites bound to MCM3 (representative of the helicase) in the region flanking three out of three origins studied in detail. Bypass of the intra-S-phase checkpoint by caffeine activates many new origins in mid- and late-replicating parts of the genome. The intra-S-phase checkpoint suppresses origin firing after the loading of Mcm10, but before the recruitment of Cdc45 and AND-1/CTF4; i.e., after helicase loading but before helicase activation and polymerase loading. Interestingly, Cdc45 recruitment upon checkpoint bypass was accompanied by the restoration of global Cdk2 kinase activity and decrease in both global and origin-bound histone H3 Lys 4 trimethylation (H3K4me3), consistent with the suggestion that both of these factors are important for Cdc45 recruitment.
机译:尽管许多化学疗法药物激活S期内关卡途径来阻断S期进程,但关于S期内关卡如何以及在何处调节人类染色体复制起点的了解甚少。在羟基脲(HU)存在下在人细胞中复制的基因组分析表明,只有最早的起源会着火,但是叉子会停滞在2 kb之内,并且激活休眠的邻近簇。起始事件位于表达基因附近,偏爱转录起始和终止位点,当它们位于基因间区域时,它们位于调节因子结合区(RFBR)附近。 HU对簇状新起源的激活表明在基因组的许可部分有许多潜在的复制起始位点,其中大多数未在正常S期中使用。与这种冗余一致,我们在详细研究的三个起源中的三个起源的侧面看到了与MCM3(解旋酶的代表)结合的多个位点。咖啡因绕过S阶段内检查点会激活基因组中晚期复制部分的许多新起点。在装载Mcm10之后,但在招募Cdc45和AND-1 / CTF4之前,S阶段内检查点抑制了源头点火。即在解旋酶加载后但在解旋酶激活和聚合酶加载之前。有趣的是,在检查点旁路时Cdc45募集伴随着全球Cdk2激酶活性的恢复以及整体和起源结合的组蛋白H3 Lys 4三甲基化(H3K4me3)的降低,这与这两个因素对于Cdc45募集都很重要的建议相一致。

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