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基因集的组织原则。

Principles for the organization of gene-sets.

作者信息

Li Wentian, Freudenberg Jan, Oswald Michaela

机构信息

The Robert S. Boas Center for Genomics and Human Genetics, The Feinstein Institute for Medical Research, North Shore LIJ Health System, Manhasset, NY, USA.

The Robert S. Boas Center for Genomics and Human Genetics, The Feinstein Institute for Medical Research, North Shore LIJ Health System, Manhasset, NY, USA.

出版信息

Comput Biol Chem. 2015 Dec;59 Pt B:139-49. doi: 10.1016/j.compbiolchem.2015.04.005. Epub 2015 Jun 10.

Abstract

A gene-set, an important concept in microarray expression analysis and systems biology, is a collection of genes and/or their products (i.e. proteins) that have some features in common. There are many different ways to construct gene-sets, but a systematic organization of these ways is lacking. Gene-sets are mainly organized ad hoc in current public-domain databases, with group header names often determined by practical reasons (such as the types of technology in obtaining the gene-sets or a balanced number of gene-sets under a header). Here we aim at providing a gene-set organization principle according to the level at which genes are connected: homology, physical map proximity, chemical interaction, biological, and phenotypic-medical levels. We also distinguish two types of connections between genes: actual connection versus sharing of a label. Actual connections denote direct biological interactions, whereas shared label connection denotes shared membership in a group. Some extensions of the framework are also addressed such as overlapping of gene-sets, modules, and the incorporation of other non-protein-coding entities such as microRNAs.

摘要

基因集是微阵列表达分析和系统生物学中的一个重要概念,是具有某些共同特征的基因和/或其产物(即蛋白质)的集合。构建基因集有许多不同的方法,但缺乏对这些方法的系统组织。在当前的公共领域数据库中,基因集主要是临时组织的,组标题名称通常由实际原因决定(例如获取基因集的技术类型或标题下基因集数量的平衡)。在这里,我们旨在根据基因连接的层次提供一种基因集组织原则:同源性、物理图谱邻近性、化学相互作用、生物学和表型医学层次。我们还区分了基因之间的两种连接类型:实际连接与标签共享。实际连接表示直接的生物相互作用,而共享标签连接表示在一个组中的共享成员身份。还讨论了该框架的一些扩展,例如基因集的重叠、模块以及其他非蛋白质编码实体(如 microRNA)的纳入。

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