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扰动敏感性的基因组特征分析

Genomic characterization of perturbation sensitivity.

作者信息

Ohn Jung Hun, Kim Jihun, Kim Ju Han

机构信息

Seoul National University Biomedical Informatics, Seoul National University College of Medicine, Seoul 110-799, Korea.

出版信息

Bioinformatics. 2007 Jul 1;23(13):i354-8. doi: 10.1093/bioinformatics/btm172.

Abstract

MOTIVATION

In determining the function of a gene, it provides much information to observe the changes in a biological system after disruption of the gene of interest through its knockout. Thanks to the microarray technology, it is now possible to profile transcriptional changes of the whole genome, thus differentiating genes that are significantly affected by the knockout. Based on microarray experiments of hundreds of different knockouts, we assigned the so called, 'Perturbation Sensitivity', to the Saccharomyces cerevisiae genome by the frequency of significant changes in the transcript level in hundreds of knockout conditions. Biologically, it reflects the degree of a gene's sensitivity to external perturbations.

RESULTS

Through gradually enriching gene sets with more perturbation sensitive genes, we show that perturbation sensitive genes are usually not essential and their coding proteins have fewer physical interaction partners and more transcription factors bind to their upstream sequences. And the two extreme gene groups, perturbation sensitive versus perturbation resistant, have mutually exclusive functional annotations.

摘要

动机

在确定基因功能时,通过基因敲除破坏目标基因后观察生物系统中的变化能提供很多信息。得益于微阵列技术,现在有可能对整个基因组的转录变化进行分析,从而区分受基因敲除显著影响的基因。基于数百种不同基因敲除的微阵列实验,我们根据在数百种基因敲除条件下转录水平显著变化的频率,为酿酒酵母基因组赋予了所谓的“扰动敏感性”。从生物学角度来看,它反映了一个基因对外部扰动的敏感程度。

结果

通过逐渐富集含有更多扰动敏感基因的基因集,我们发现扰动敏感基因通常并非必需,它们编码的蛋白质具有较少的物理相互作用伙伴,且有更多转录因子结合到其上游序列。并且,两个极端的基因组,即扰动敏感型与扰动抗性型,具有相互排斥的功能注释。

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