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The Interplay of Chromatin Landscape and DNA-Binding Context Suggests Distinct Modes of EIN3 Regulation in Arabidopsis thaliana

机译:染色质景观和DNA结合上下文之间的相互作用表明拟南芥EIN3调节的不同模式。

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摘要

The plant hormone ethylene regulates numerous developmental processes and stress responses. Ethylene signaling proceeds via a linear pathway, which activates transcription factor (TF) EIN3, a primary transcriptional regulator of ethylene response. EIN3 influences gene expression upon binding to a specific sequence in gene promoters. This interaction, however, might be considerably affected by additional co-factors. In this work, we perform whole genome bioinformatics study to identify the impact of epigenetic factors in EIN3 functioning. The analysis of publicly available ChIP-Seq data on EIN3 binding in Arabidopsis thaliana showed bimodality of distribution of EIN3 binding regions (EBRs) in gene promoters. Besides a sharp peak in close proximity to transcription start site, which is a common binding region for a wide variety of TFs, we found an additional extended peak in the distal promoter region. We characterized all EBRs with respect to the epigenetic status appealing to previously published genome-wide map of nine chromatin states in A. thaliana. We found that the implicit distal peak was associated with a specific chromatin state (referred to as chromatin state 4 in the primary source), which was just poorly represented in the pronounced proximal peak. Intriguingly, EBRs corresponding to this chromatin state 4 were significantly associated with ethylene response, unlike the others representing the overwhelming majority of EBRs related to the explicit proximal peak. Moreover, we found that specific EIN3 binding sequences predicted with previously described model were enriched in the EBRs mapped to the chromatin state 4, but not to the rest ones. These results allow us to conclude that the interplay of genetic and epigenetic factors might cause the distinct modes of EIN3 regulation.
机译:植物激素乙烯调节许多发育过程和应激反应。乙烯信号传导通过线性途径进行,该途径激活了转录因子(TF)EIN3,这是乙烯反应的主要转录调节因子。 EIN3与基因启动子中的特定序列结合后会影响基因表达。但是,此交互可能会受到其他辅助因素的很大影响。在这项工作中,我们进行了全基因组生物信息学研究,以确定表观遗传因素对EIN3功能的影响。有关拟南芥中EIN3结合的公开可用ChIP-Seq数据的分析表明,基因启动子中EIN3结合区(EBR)的分布是双峰的。除了在靠近转录起始位点(这是多种TF的常见结合区)的尖峰外,我们还在远端启动子区发现了一个额外的扩展峰。我们表征了所有表皮遗传状态的EBR,吸引了先前发表的拟南芥中9个染色质状态的全基因组图谱。我们发现隐式远端峰与特定的染色质状态(在主要来源中称为染色质状态4)相关,而在明显的近端峰中仅能很好地表示。有趣的是,与该染色质状态4相对应的EBR与乙烯反应显着相关,而其他代表与显性近端峰相关的绝大多数EBR则与之不同。此外,我们发现用先前描述的模型预测的特定EIN3结合序列在映射到染色质状态4的EBR中富集,而在其余的EBR中却不丰富。这些结果使我们可以得出结论,遗传因素和表观遗传因素的相互作用可能会导致EIN3调控的独特模式。

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