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Calculating the statistical significance of physical clusters of co-regulated genes in the genome: the role of chromatin in domain-wide gene regulation

机译:计算基因组中共同调控基因的物理簇的统计学意义:染色质在全域基因调控中的作用

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Physical clusters of co-regulated, but apparently functionally unrelated, genes are present in many genomes. Despite the important implication that the genomic environment contributes appreciably to the regulation of gene expression, no simple statistical method has been described to identify physical clusters of co-regulated genes. Here we report the development of a model that allows the direct calculation of the significance of such clusters. We have implemented the derived statistical relation in a software program, Pyxis, and have analyzed a selection of Saccharomyces cerevisiae gene expression microarray data sets. We have identified many gene clusters where constituent genes exhibited a regulatory dependence on proteins previously implicated in chromatin structure. Specifically, we found that Tup1p-dependent gene domains were enriched close to telomeres, which suggested a new role for Tup1p in telomere silencing. In addition, we identified Sir2p-, Sir3p- and Sir4p-dependent clusters, which suggested the presence of Sir-mediated heterochromatin in previously unidentified regions of the yeast genome. We also showed the presence of Sir4p-dependent gene clusters bordering the HMRa heterothallic locus, which suggested leaky termination of the heterochromatin by the boundary elements. These results demonstrate the utility of Pyxis in identifying possible higher order genomic features that may contribute to gene regulation in extended domains.
机译:许多基因组中都存在共同调控但功能上不相关的物理簇。尽管有重要的暗示,即基因组环境对基因表达的调控有重要作用,但尚未描述简单的统计方法来鉴定共调控基因的物理簇。在这里,我们报告了一个模型的开发,该模型可以直接计算此类聚类的重要性。我们已经在软件程序Pyxis中实现了导出的统计关系,并分析了酿酒酵母基因表达微阵列数据集的选择。我们已经鉴定出许多基因簇,其中组成基因对先前牵涉染色质结构的蛋白质表现出调节依赖性。具体来说,我们发现Tup1p依赖的基因域富集到接近端粒,这暗示Tup1p在端粒沉默中的新作用。另外,我们鉴定了Sir2p,Sir3p和Sir4p依赖性簇,这提示在酵母基因组先前未鉴定的区域中存在Sir介导的异染色质。我们还表明存在与HMRa异源基因位点接壤的Sir4p依赖性基因簇,这提示异染色质被边界元件泄漏终止。这些结果证明了Pyxis在鉴定可能有助于扩展域基因调控的可能的更高阶基因组特征中的效用。

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