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酵母启动子中无核小体区域是转录因子竞争结合与染色质修饰因子相互作用的结果。

Nucleosome free regions in yeast promoters result from competitive binding of transcription factors that interact with chromatin modifiers.

机构信息

Biozentrum, University of Basel, and Swiss Institute of Bioinformatics, Basel, Switzerland.

出版信息

PLoS Comput Biol. 2013;9(8):e1003181. doi: 10.1371/journal.pcbi.1003181. Epub 2013 Aug 22.

Abstract

Because DNA packaging in nucleosomes modulates its accessibility to transcription factors (TFs), unraveling the causal determinants of nucleosome positioning is of great importance to understanding gene regulation. Although there is evidence that intrinsic sequence specificity contributes to nucleosome positioning, the extent to which other factors contribute to nucleosome positioning is currently highly debated. Here we obtained both in vivo and in vitro reference maps of positions that are either consistently covered or free of nucleosomes across multiple experimental data-sets in Saccharomyces cerevisiae. We then systematically quantified the contribution of TF binding to nucleosome positioning using a rigorous statistical mechanics model in which TFs compete with nucleosomes for binding DNA. Our results reconcile previous seemingly conflicting results on the determinants of nucleosome positioning and provide a quantitative explanation for the difference between in vivo and in vitro positioning. On a genome-wide scale, nucleosome positioning is dominated by the phasing of nucleosome arrays over gene bodies, and their positioning is mainly determined by the intrinsic sequence preferences of nucleosomes. In contrast, larger nucleosome free regions in promoters, which likely have a much more significant impact on gene expression, are determined mainly by TF binding. Interestingly, of the 158 yeast TFs included in our modeling, we find that only 10-20 significantly contribute to inducing nucleosome-free regions, and these TFs are highly enriched for having direct interactions with chromatin remodelers. Together our results imply that nucleosome free regions in yeast promoters results from the binding of a specific class of TFs that recruit chromatin remodelers.

摘要

由于 DNA 在核小体中的包装会影响转录因子(TFs)的可及性,因此揭示核小体定位的因果决定因素对于理解基因调控至关重要。尽管有证据表明内在序列特异性有助于核小体定位,但其他因素对核小体定位的贡献程度目前仍存在很大争议。在这里,我们获得了酿酒酵母多个实验数据集的体内和体外参考图谱,这些图谱显示了核小体一致覆盖或自由的位置。然后,我们使用一种严格的统计力学模型,该模型中 TF 与核小体竞争结合 DNA,系统地量化了 TF 结合对核小体定位的贡献。我们的结果调和了先前关于核小体定位决定因素的看似矛盾的结果,并为体内和体外定位之间的差异提供了定量解释。在全基因组范围内,核小体的定位主要由核小体阵列在基因体上的分相决定,其定位主要由核小体的内在序列偏好决定。相比之下,启动子中较大的无核小体区域可能对基因表达有更重要的影响,主要由 TF 结合决定。有趣的是,在我们的模型中包含的 158 个酵母 TF 中,我们发现只有 10-20 个显著有助于诱导无核小体区域,这些 TF 与染色质重塑剂的直接相互作用非常丰富。总之,我们的结果表明,酵母启动子中无核小体区域是由特定类别的 TF 结合形成的,这些 TF 招募了染色质重塑剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cf1/3749953/1ac232a10cdc/pcbi.1003181.g001.jpg

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