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Arabidopsis DNA polymerase epsilon recruits components of Polycomb repressor complex to mediate epigenetic gene silencing

机译:拟南芥DNA聚合酶ε募集Polycomb阻遏物复合物的成分来介导表观遗传基因沉默

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Arabidopsis ESD7 locus encodes the catalytic subunit of the DNA Pol I mu involved in the synthesis of the DNA leading strand and is essential for embryo viability. The hypomorphic allele esd7-1 is viable but displays a number of pleiotropic phenotypic alterations including an acceleration of flowering time. Furthermore, Pol I mu is involved in the epigenetic silencing of the floral integrator genes FT and SOC1, but the molecular nature of the transcriptional gene silencing mechanisms involved remains elusive. Here we reveal that ESD7 interacts with components of the PRC2 such as CLF, EMF2 and MSI1, and that mutations in ESD7 cause a decrease in the levels of the H3K27me3 mark present in the chromatin of FT and SOC1. We also demonstrate that a domain of the C-terminal region of ESD7 mediates the binding to the different PRC2 components and this interaction is necessary for the proper recruitment of PRC2 to FT and SOC1 chromatin. We unveil the existence of interplay between the DNA replication machinery and the PcG complexes in epigenetic transcriptional silencing. These observations provide an insight into the mechanisms ensuring that the epigenetic code at pivotal loci in developmental control is faithfully transmitted to the progeny of eukaryotic cells.
机译:拟南芥ESD7基因座编码参与DNA前导链合成的DNA Pol I mu的催化亚基,对于胚胎的生存能力至关重要。亚态等位基因esd7-1是可行的,但表现出许多多效性表型改变,包括开花时间的加速。此外,Pol I mu参与了花卉整合子基因FT和SOC1的表观遗传沉默,但是所涉及的转录基因沉默机制的分子本质仍然难以捉摸。在这里,我们揭示了ESD7与PRC2的组件(例如CLF,EMF2和MSI1)相互作用,并且ESD7中的突变导致FT和SOC1染色质中存在的H3K27me3标记水平降低。我们还证明了ESD7 C端区域的结构域介导了与不同PRC2组分的结合,并且这种相互作用对于将PRC2正确地募集到FT和SOC1染色质是必需的。我们揭示了表观遗传转录沉默中DNA复制机制和PcG复合物之间相互作用的存在。这些观察提供了对确保发育控制中的关键基因座的表观遗传密码能忠实地传递至真核细胞后代的机制的见解。

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