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Study of coordinative gene expression at the biological process level

机译:在生物过程水平上研究协调基因表达

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Motivation: Cellular processes are not isolated groups of events. Nevertheless, in most microarray analyses, they tend to be treated as standalone units. To shed light on how various parts of the interlocked biological processes are coordinated at the transcription level, there is a need to study the between-unit expressional relationship directly.Results: We approach this issue by constructing an index of correlation function to convey the global pattern of coexpression between genes from one process and genes from the entire genome. Processes with similar signatures are then identified and projected to a process-to-process association graph. This top-down method allows for detailed gene-level analysis between linked processes to follow up. Using the cell-cycle gene-expression profiles for Saccharomyces cerevisiae, we report well-organized networks of biological processes that would be difficult to find otherwise. Using another dataset, we report a sharply different network structure featuring cellular responses under environmental stress.
机译:动机:细胞过程不是孤立的事件组。但是,在大多数微阵列分析中,它们往往被视为独立单元。为了阐明互锁的生物过程的各个部分在转录水平上是如何协调的,有必要直接研究单元间的表达关系。结果:我们通过构建相关函数的指标来表达这一问题来解决这个问题。一个过程的基因与整个基因组的基因之间共表达的模式。然后识别具有相似签名的流程,并将其投影到流程之间的关联图。这种自上而下的方法允许在相关的后续过程之间进行详细的基因水平分析。使用酿酒酵母的细胞周期基因表达谱,我们报告了生物学过程的组织良好的网络,否则很难找到。使用另一个数据集,我们报告了在环境压力下以细胞反应为特征的截然不同的网络结构。

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