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Epigenetic regulation of replication origin assembly: A role for histone H1 and chromatin remodeling factors

机译:复制原产地组装的表观遗传调节:组蛋白H1和染色质重塑因子的作用

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During early embryonic development in several metazoans, accurate DNA replication is ensured by high number of replication origins. This guarantees rapid genome duplication coordinated with fast cell divisions. In Xenopus laevis embryos this program switches to one with a lower number of origins at a developmental stage known as mid-blastula transition (MBT) when cell cycle length increases and gene transcription starts. Consistent with this regulation, somatic nuclei replicate poorly when transferred to eggs, suggesting the existence of an epigenetic memory suppressing replication assembly origins at all available sites. Recently, it was shown that histone H1 imposes a non-permissive chromatin configuration preventing replication origin assembly on somatic nuclei. This somatic state can be erased by SSRP1, a subunit of the FACT complex. Here, we further develop the hypothesis that this novel form of epigenetic memory might impact on different areas of vertebrate biology going from nuclear reprogramming to cancer development.
机译:在几种美容素早期胚胎发育期间,通过大量复制起源来确保精确的DNA复制。这保证了快速的基因组重复,与快速细胞部门协调。在Xenopus Laevis胚胎中,该程序切换到一种在称为中迹过渡(MBT)的发育阶段的起源数量较少的起源,当细胞周期长度增加和基因转录开始时。与该调节一致,在转移到鸡蛋时,体细胞核核心差,表明存在抑制所有可用部位的复制组合的表观遗传记忆。最近,显示组蛋白H1施加非允许染色质构型,防止在体细胞核上的复制源组件。这种躯体状态可以通过SSRP1,事实复杂的亚基删除。在这里,我们进一步发展了这种新颖的表观遗传记忆可能影响来自核重编程到癌症发展的脊椎动物生物学的不同领域的假设。

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