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基于 Z 曲线理论分析酿酒酵母核小体定位的动态特性。

Z curve theory-based analysis of the dynamic nature of nucleosome positioning in Saccharomyces cerevisiae.

机构信息

College of Bioinformatics Science and Technology, Harbin Medical University, Harbin 150081, China; Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China.

出版信息

Gene. 2013 Nov 1;530(1):8-18. doi: 10.1016/j.gene.2013.08.018. Epub 2013 Aug 16.

Abstract

Nucleosome is the elementary structural unit of eukaryotic chromatin. Instability of nucleosome positioning plays critical roles in chromatin remodeling in differentiation and disease. In this study, we investigated nucleosome dynamics in the Saccharomyces cerevisiae genome using a geometric model based on Z curve theory. We identified 52,941 stable nucleosomes and 7607 dynamic nucleosomes, compiling them into a genome-wide nucleosome dynamic positioning map and constructing a user-friendly visualization platform (http://bioinfo.hrbmu.edu.cn/nucleosome). Our approach achieved a sensitivity of 90.31% and a specificity of 87.76% for S. cerevisiae. Analysis revealed transcription factor binding sites (TFBSs) were enriched in linkers. And among the sparse nucleosomes around TFBSs, dynamic nucleosomes were slightly preferred. Gene Ontology (GO) enrichment analysis indicated that stable and dynamic nucleosomes were enriched on genes involved in different biological processes and functions. This study provides an approach for comprehending chromatin remodeling and transcriptional regulation of genes.

摘要

核小体是真核染色质的基本结构单位。核小体定位的不稳定性在分化和疾病中的染色质重塑中起着关键作用。在这项研究中,我们使用基于 Z 曲线理论的几何模型研究了酿酒酵母基因组中的核小体动力学。我们鉴定了 52941 个稳定核小体和 7607 个动态核小体,将它们编制成全基因组核小体动态定位图谱,并构建了一个用户友好的可视化平台(http://bioinfo.hrbmu.edu.cn/nucleosome)。我们的方法在酿酒酵母中的灵敏度为 90.31%,特异性为 87.76%。分析表明转录因子结合位点(TFBSs)在连接子中富集。并且在 TFBS 周围稀疏的核小体中,动态核小体略占优势。基因本体论(GO)富集分析表明,稳定和动态核小体富集在参与不同生物学过程和功能的基因上。这项研究为理解染色质重塑和基因转录调控提供了一种方法。

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