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通过整合多物种表达编目来识别基因功能和模块连接。

Identifying gene function and module connections by the integration of multispecies expression compendia.

机构信息

Laboratory of Integrative Systems Physiology, Institute of Bioengineering, École Polytechnique Fédérale de Lausanne, Lausanne 1015, Switzerland.

Institute of Mathematics, École Polytechnique Fédérale de Lausanne, Lausanne 1015, Switzerland.

出版信息

Genome Res. 2019 Dec;29(12):2034-2045. doi: 10.1101/gr.251983.119. Epub 2019 Nov 21.

Abstract

The functions of many eukaryotic genes are still poorly understood. Here, we developed and validated a new method, termed GeneBridge, which is based on two linked approaches to impute gene function and bridge genes with biological processes. First, ene-odule ssociation etermination (G-MAD) allows the annotation of gene function. Second, odule-odule ssociation etermination (M-MAD) allows predicting connectivity among modules. We applied the GeneBridge tools to large-scale multispecies expression compendia-1700 data sets with over 300,000 samples from human, mouse, rat, fly, worm, and yeast-collected in this study. G-MAD identifies novel functions of genes-for example, in mitochondrial respiration and in T cell activation-and also suggests novel components for modules, such as for cholesterol biosynthesis. By applying G-MAD on data sets from respective tissues, tissue-specific functions of genes were identified-for instance, the roles of in liver and kidney, as well as in brain and liver. Using M-MAD, we identified a list of module-module associations, such as those between mitochondria and proteasome, mitochondria and histone demethylation, as well as ribosomes and lipid biosynthesis. The GeneBridge tools together with the expression compendia are available as an open resource, which will facilitate the identification of connections linking genes, modules, phenotypes, and diseases.

摘要

许多真核生物基因的功能仍然知之甚少。在这里,我们开发并验证了一种新的方法,称为 GeneBridge,它基于两种关联方法来推断基因功能并将基因与生物过程联系起来。首先,基因模块关联确定(G-MAD)允许对基因功能进行注释。其次,模块模块关联确定(M-MAD)允许预测模块之间的连接。我们将 GeneBridge 工具应用于大规模多物种表达文库——本研究共收集了来自人类、小鼠、大鼠、果蝇、线虫和酵母的 30 多万个样本的 1700 个数据集。G-MAD 确定了基因的新功能——例如,在呼吸作用中发挥作用 以及在 T 细胞激活中发挥作用 ,并为模块提出了新的组成部分,如胆固醇生物合成。通过在来自各个组织的数据集上应用 G-MAD,鉴定了基因的组织特异性功能——例如,在肝脏和肾脏中的作用 以及在大脑和肝脏中的作用 。使用 M-MAD,我们确定了一系列模块-模块关联,例如线粒体与蛋白酶体、线粒体与组蛋白去甲基化以及核糖体与脂质生物合成之间的关联。GeneBridge 工具和表达文库作为开放资源提供,这将有助于鉴定将基因、模块、表型和疾病联系起来的连接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56e4/6886503/21b246c0e6c2/2034f01.jpg

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