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Analysis of model replication origins in Drosophila reveals new aspects of the chromatin landscape and its relationship to origin activity and the prereplicative complex

机译:果蝇模型复制起源的分析揭示了染色质景观的新方面及其与起源活动和复制前复合物的关系

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摘要

Epigenetic regulation exerts a major influence on origins of DNA replication during development. The mechanisms for this regulation, however, are poorly defined. We showed previously that acetylation of nucleosomes regulates the origins that mediate developmental gene amplification during Drosophila oogenesis. Here we show that developmental activation of these origins is associated with acetylation of multiple histone lysines. Although these modifications are not unique to origin loci, we find that the level of acetylation is higher at the active origins and quantitatively correlated with the number of times these origins initiate replication. All of these acetylation marks were developmentally dynamic, rapidly increasing with origin activation and rapidly declining when the origins shut off and neighboring promoters turn on. Fine-scale analysis of the origins revealed that both hyperacetylation of nucleosomes and binding of the origin recognition complex (ORC) occur in a broad domain and that acetylation is highest on nucleosomes adjacent to one side of the major site of replication initiation. It was surprising to find that acetylation of some lysines depends on binding of ORC to the origin, suggesting that multiple histone acetyltransferases may be recruited during origin licensing. Our results reveal new insights into the origin epigenetic landscape and lead us to propose a chromatin switch model to explain the coordination of origin and promoter activity during development.
机译:表观遗传调控对发育过程中DNA复制的起源产生重大影响。但是,该法规的机制定义不清。我们以前表明核小体的乙酰化调节果蝇卵子发生过程中介导发育基因扩增的起源。在这里,我们表明这些起源的发育激活与多个组蛋白赖氨酸的乙酰化有关。尽管这些修饰不是起源基因座所独有的,但我们发现乙酰化水平在活性起源处较高,并且与这些起源起始复制的次数在数量上相关。所有这些乙酰化标记都是发育动态的,随着起点的激活而迅速增加,并且当起点关闭且邻近的启动子开启时迅速下降。对起源的精细分析表明,核小体的超乙酰化作用和起源识别复合物(ORC)的结合均在宽域内发生,乙酰化在邻近复制起始主要位点一侧的核小体上最高。令人惊讶地发现,某些赖氨酸的乙酰化取决于ORC与来源的结合,这表明在来源许可过程中可能募集了多个组蛋白乙酰转移酶。我们的结果揭示了对起源表观遗传景观的新见解,并促使我们提出了一种染色质转换模型来解释发育过程中起源和启动子活性的协调。

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