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RNA 合成与多个 TBP-染色质结合事件相关。

RNA synthesis is associated with multiple TBP-chromatin binding events.

机构信息

Department of Biochemistry and Molecular Genetics, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.

出版信息

Sci Rep. 2017 Jan 4;7:39631. doi: 10.1038/srep39631.

Abstract

Competition ChIP is an experimental method that allows transcription factor (TF) chromatin turnover dynamics to be measured across a genome. We develop and apply a physical model of TF-chromatin competitive binding using chemical reaction rate theory and are able to derive the physical half-life or residence time for TATA-binding protein (TBP) across the yeast genome from competition ChIP data. Using our physical modeling approach where we explicitly include the induction profile of the competitor in the model, we are able to estimate yeast TBP-chromatin residence times as short as 1.3 minutes, demonstrating that competition ChIP is a relatively high temporal-resolution approach. Strikingly, we find a median value of ~5 TBP-chromatin binding events associated with the synthesis of one RNA molecule across Pol II genes, suggesting multiple rounds of pre-initiation complex assembly and disassembly before productive elongation of Pol II is achieved at most genes in the yeast genome.

摘要

竞争 ChIP 是一种实验方法,可用于测量整个基因组中转录因子(TF)染色质周转动态。我们使用化学反应率理论开发并应用了 TF-染色质竞争结合的物理模型,能够从竞争 ChIP 数据中推导出酵母基因组中 TATA 结合蛋白(TBP)的物理半衰期或停留时间。使用我们的物理建模方法,我们在模型中明确包含了竞争者的诱导曲线,我们能够估计酵母 TBP-染色质的停留时间短至 1.3 分钟,这表明竞争 ChIP 是一种相对较高时间分辨率的方法。引人注目的是,我们发现与 Pol II 基因中一个 RNA 分子的合成相关的 TBP-染色质结合事件中位数约为 5 个,这表明在大多数酵母基因组中的基因中,在实现 Pol II 的有效延伸之前,前起始复合物的组装和拆卸可能会经历多个循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb18/5209698/1de63971d6dd/srep39631-f1.jpg

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