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YeasTSS: an integrative web database of yeast transcription start sites

机译:YeasTSS:酵母转录起始位点的综合网络数据库

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摘要

The transcription initiation landscape of eukaryotic genes is complex and highly dynamic. In eukaryotes, genes can generate multiple transcript variants that differ in 5′ boundaries due to usages of alternative transcription start sites (TSSs), and the abundance of transcript isoforms are highly variable. Due to a large number and complexity of the TSSs, it is not feasible to depict details of transcript initiation landscape of all genes using text-format genome annotation files. Therefore, it is necessary to provide data visualization of TSSs to represent quantitative TSS maps and the core promoters (CPs). In addition, the selection and activity of TSSs are influenced by various factors, such as transcription factors, chromatin remodeling and histone modifications. Thus, integration and visualization of functional genomic data related to these features could provide a better understanding of the gene promoter architecture and regulatory mechanism of transcription initiation. Yeast species play important roles for the research and human society, yet no database provides visualization and integration of functional genomic data in yeast. Here, we generated quantitative TSS maps for 12 important yeast species, inferred their CPs and built a public database, YeasTSS (). YeasTSS was designed as a central portal for visualization and integration of the TSS maps, CPs and functional genomic data related to transcription initiation in yeast. YeasTSS is expected to benefit the research community and public education for improving genome annotation, studies of promoter structure, regulated control of transcription initiation and inferring gene regulatory network.
机译:真核基因的转录起始态是复杂且高度动态的。在真核生物中,由于使用替代转录起始位点(TSS),基因可以产生在5'边界不同的多个转录变异体,并且转录异构体的丰度很高。由于TSS的数量众多和复杂性,使用文本格式的基因组注释文件描述所有基因的转录本启动图的细节是不可行的。因此,有必要提供TSS的数据可视化以表示定量的TSS图和核心启动子(CP)。另外,TSS的选择和活性受多种因素影响,例如转录因子,染色质重塑和组蛋白修饰。因此,与这些特征有关的功能基因组数据的整合和可视化可以提供对基因启动子结构和转录起始调控机制的更好理解。酵母菌在研究和人类社会中起着重要作用,但是没有数据库提供酵母中功能基因组数据的可视化和整合。在这里,我们生成了12种重要酵母菌种的定量TSS图谱,推断了它们的CP并建立了一个公共数据库YeasTSS()。 YeasTSS被设计为一个中央门户,用于可视化和整合与酵母转录起始相关的TSS图,CP和功能基因组数据。 YeasTSS有望从研究团体和公众教育中受益,以改善基因组注释,启动子结构研究,转录起始的调控控制和推断基因调控网络。

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