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利用全基因组遗传网络识别体内通路。

Identifying in vivo pathways using genome-wide genetic networks.

作者信息

Gray J V, Krause S A

机构信息

Division of Molecular Genetics, Faculty of Biomedical and Life Sciences, University of Glasgow, 56 Dumbarton Road, Glasgow G11 6NU, U.K.

出版信息

Biochem Soc Trans. 2007 Dec;35(Pt 6):1538-41. doi: 10.1042/BST0351538.

Abstract

Synthetic genetic interactions occur between two genes when the double mutant displays a phenotype much more severe than does either single mutant alone. Global networks of such interactions are now being systematically determined, spearheaded by the budding yeast genome. Genetic interactions reflect in vivo relationships between gene products. Extracting that functional information from such genetic networks is now possible by exploiting and modifying the key concept of congruence. Here, we focus on synthetic genetic interactions between pairs of null mutations in non-essential yeast genes. We summarize how to identify biological pathways from these emerging networks, using illustrative examples.

摘要

当双突变体表现出比单独的任何一个单突变体都严重得多的表型时,两个基因之间就会发生合成遗传相互作用。现在正在系统地确定此类相互作用的全局网络,以芽殖酵母基因组为首。遗传相互作用反映了基因产物之间的体内关系。现在可以通过利用和修改一致性的关键概念,从这些遗传网络中提取功能信息。在这里,我们重点关注非必需酵母基因中零突变对之间的合成遗传相互作用。我们用示例总结了如何从这些新兴网络中识别生物途径。

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