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PcG-Mediated Higher-Order Chromatin Structures Modulate Replication Programs at the Drosophila BX-C

机译:PcG介导的高级染色质结构调节果蝇BX-C上的复制程序。

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摘要

Polycomb group proteins (PcG) exert conserved epigenetic functions that convey maintenance of repressed transcriptional states, via post-translational histone modifications and high order structure formation. During S-phase, in order to preserve cell identity, in addition to DNA information, PcG-chromatin-mediated epigenetic signatures need to be duplicated requiring a tight coordination between PcG proteins and replication programs. However, the interconnection between replication timing control and PcG functions remains unknown. Using Drosophila embryonic cell lines, we find that, while presence of specific PcG complexes and underlying transcription state are not the sole determinants of cellular replication timing, PcG-mediated higher-order structures appear to dictate the timing of replication and maintenance of the silenced state. Using published datasets we show that PRC1, PRC2, and PhoRC complexes differently correlate with replication timing of their targets. In the fully repressed BX-C, loss of function experiments revealed a synergistic role for PcG proteins in the maintenance of replication programs through the mediation of higher-order structures. Accordingly, replication timing analysis performed on two Drosophila cell lines differing for BX-C gene expression states, PcG distribution, and chromatin domain conformation revealed a cell-type-specific replication program that mirrors lineage-specific BX-C higher-order structures. Our work suggests that PcG complexes, by regulating higher-order chromatin structure at their target sites, contribute to the definition and the maintenance of genomic structural domains where genes showing the same epigenetic state replicate at the same time.
机译:聚梳组蛋白(PcG)发挥保守的表观遗传功能,通过翻译后组蛋白修饰和高阶结构形成来传达受阻转录状态的维持。在S期中,为了保留细胞身份,除了DNA信息外,还需要复制PcG-染色质介导的表观遗传学签名,这需要PcG蛋白与复制程序之间的紧密配合。但是,复制定时控制和PcG功能之间的互连仍然未知。使用果蝇胚胎细胞系,我们发现,虽然特定的PcG复合物的存在和潜在的转录状态不是细胞复制时机的唯一决定因素,但PcG介导的高阶结构似乎决定了复制时机和维持沉默状态的时机。 。使用已发布的数据集,我们显示PRC1,PRC2和PhoRC复合体与其靶标的复制时机不同。在完全受阻的BX-C中,功能丧失实验揭示了PcG蛋白在介导高阶结构介导的复制程序维持中的协同作用。因此,对两个不同的果蝇细胞系进行BX-C基因表达状态,PcG分布和染色质域构象的复制时序分析揭示了一种细胞类型特定的复制程序,该程序反映了谱系特定的BX-C高阶结构。我们的工作表明,PcG复合物通过调节其靶位点的高阶染色质结构,有助于定义和维持基因组结构域,在这些结构域中,表现出相同表观遗传状态的基因在同一时间复制。

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