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Phylogenetically and Spatially Conserved Word Pairs Associated with Gene Expression Changes in Yeasts

机译:与酵母的基因表达变化相关的系统发生和空间保守词对

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Background. Transcriptional regulation in eukaryotes is often multifactorial, involving multiple transcription factors binding to the same transcription control region (e.g., upstream activating sequences and enhancers), and to understand the regulatory content of eukaryotic genomes it is necessary to consider the cooccurrence and spatial relationships of individual binding sites. The identification of sequences conserved among related species (often known as phylogenetic footprinting) has been successfully used to identify individual transcription factor binding sites. Here, we extend this concept of functional conservation to higher-order features of transcription control regions involved in the multifactorial control of gene expression. Results.We used the genome sequences of four yeast species of the genus Saccharomyces to identify sequences potentially involved in multifactorial control of gene expression. We found 1,117 potential regulatory "templates": pairs of hexameric sequences that arejointly conserved in transcription regulatory regions and also exhibit non-random relative spacing. Many of the individual sequences in these templates correspond to known transcription factor binding sites, and the sets of genes containing a particulartemplate in their transcription control regions tend to be differentially expressed in conditions where the corresponding transcription factors are known to be active. Conclusions. The incorporation of both joint conservation and spacing constraints of sequence pairs predicts groups of target genes that were specific for common patterns of gene expression. Our work suggests that positional information, especially the relative spacing between transcription factor binding sites, may represent a common organizing principle of transcription control regions.
机译:背景。在真核生物中的转录调节是常多因素的,涉及多个转录因子结合相同的转录控制区域(例如,上游激活序列和增强子),并了解真核基因组的调节含量,有必要考虑的个体的同现和空间关系结合位点。相关物种中保守的序列的鉴定(通常称为系统发育足迹分析)已成功地用于识别单个转录因子结合位点。在这里,我们扩展功能保守的这一概念参与基因表达的多因素的控制转录控制区的较高阶的特征。 Results.We使用的酵母属四个酵母物种的基因组序列,以识别潜在参与基因表达的多因素的控制序列。我们发现1117潜在的监管的“模板”:对在转录调控区域arejointly保守,也表现出非随机相对间距六聚体序列。许多这些模板中的各个序列的对应于已知转录因子结合位点,以及包含在其转录控制区一个particulartemplate基因的组趋向于在将相应的转录因子已知是活性的条件下差异表达的。结论。的序列对两者联合保护和空间约束纳入预测,是特异性的基因表达的共同模式靶基因的组。我们的工作表明,位置信息,尤其是转录因子结合位点之间的相对距离,可能代表转录控制区的一个共同的组织原则。

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