[从酵母基因表达时间序列估计粗基因网络]。

Xiao-Jiang Xu, Lian-Shui Wang, Da-Fu Ding
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引用次数: 0

摘要

基因网络是基因与基因在表达水平上调控关系的集合。本研究采用线性转录建模、启动子元件鉴定和基因共表达聚类相结合的方法,从表达时间序列中破译酵母基因网络。细胞必须重组基因组表达,以适应在每种环境中生长和生存所需的程序。许多基因的表达受环境胁迫的调控。环境胁迫诱导的许多基因产物涉及碳水化合物的代谢、结构修复甚至孢子形成。有趣的是,我们发现转录因子Mcm1和Dal82分别在细胞周期进程和环境应激反应中与其结合位点TT[键]CC[三键]T[双键]GGAAA和TGAAAAWTTT相匹配。这些结论与已知的观察结果相一致。结果表明,该方法可用于从微阵列数据中建模基因网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Estimating coarse gene networks from yeast gene expression time series].

Gene networks is the collection of gene-gene regulatory relations at the expression level. In this study, a combined approach of the linear transcriptional modeling, identification of promoter elements and gene co-expression clustering is developed to decipher yeast gene networks from expression time series. The cell must reorganize the genomic expression to programs required for growth and survival in each environment. The expression of many genes is regulated by environmental stress. The products of many genes that induced in the environmental stress are involved in metabolism of carbohydrates, structural repairs and even sporulation. Interestingly, it is identified that transcription factors Mcm1 and Dal82 matched their binding sites TT[bond]CC[triple bond]T[double bond]GGAAA and TGAAAAWTTT in cell cycle progression and environmental stress response, respectively. These conclusions agree with the known observations. The results indicate that the approach may be useful for modeling gene networks from microarray data.

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