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Analysis of functional linkages between nucleosome dynamics and trans-regulatory factors

机译:核小组动力学与跨监管因子之间的功能联系分析

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Intergenic regions are far from stable owing to the trans-regulatory factors that regulate chromatin structure. Nucleosome organization at promoter has been shown to exhibit distinct patterns corresponding to gene expression levels. In regulatory processes, such trans-factors as post-translational modifications (PTMs) and transcriptional regulators are presumably related to the establishment of such nucleosome dynamics. However, their concrete relationships, especially in gene regulation, remain elusive. We, therefore, sought to understand the functional linkages among these factors (8 PTMs and 15 transcriptional regulators) and nucleosome dynamics in S.cerevisiae by deriving a Bayesian network (BN)-based model representing their interactions. Our recovered network shows consistency with reports in literature as well as gives some new insights, such as the linkages of H3 methylation, transcriptional regulators and nucleosome dynamics in pre-initiation complex (PIC) assembly/disassembly, gene repression, and postinitia-tion regulation. The results also hint that nucleosome organization at promoter is intentionally volatile in various regulatory pathways and that trans-factors take part in regulating nucleosome dynamics.
机译:由于调节染色质结构的反式调节因子,代际区域远非稳定。已显示启动子的核体组织表现出对应于基因表达水平的明显模式。在监管过程中,这种杂交因子作为翻译后修饰(PTMS)和转录调节剂可能与建立此类核小组动态有关。然而,它们的具体关系,特别是在基因调节中仍然难以捉摸。因此,我们试图通过推导出代表其相互作用的贝叶斯网络(BN)模型来了解这些因素(8种PTMS和15个转录调节因子)和核小体动力学中的功能联系。我们恢复的网络展示了文学中的报告以及提供了一些新的见解,例如H3甲基化,转录调节剂和核小体动力学在预发起复合体(PIC)组装/拆卸,基因抑制和PostInitia-Tion调节中的联系。结果还提出了启动子的核体组织在各种调节途径中有意挥发,并且杂环分为调节核小体动力学。

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