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GOrevenge:一种新颖的通用反向工程方法,用于通过使用本体识别关键分子参与者。

GOrevenge: a novel generic reverse engineering method for the identification of critical molecular players, through the use of ontologies.

机构信息

Department of Computer Science and Biomedical Informatics, University of Central Greece, Lamia 35100, Greece.

出版信息

IEEE Trans Biomed Eng. 2011 Dec;58(12):3522-7. doi: 10.1109/TBME.2011.2164794. Epub 2011 Aug 15.

Abstract

The ever-increasing use of ontologies in modern biological analysis and interpretation facilitates the understanding of the cellular procedures, their hierarchical organization, and their potential interactions at a system's level. Currently, the gene ontology serves as a paradigm, where through the annotation of whole genomes of certain organisms, genes subsets selected, either from high-throughput experiments or with an established pivotal role regarding the probed disease, can act as a starting point for the exploration of their underlying functional interconnections. This may also aid the elucidation of hidden regulatory mechanisms among genes. Reverse engineering the functional relevance of genes to specific cellular pathways and vice versa, through the exploitation of the inner structure of the ontological vocabularies, may help impart insight regarding the identification and prioritization of the critical role of specific genes. The proposed graph-theoretical method is showcased in a pancreatic cancer and a T-cell acute lymphoblastic leukemia gene set, incorporating edge and Resnik semantic similarity metrics, and systematically evaluated regarding its performance.

摘要

本体在现代生物学分析和解释中的应用日益广泛,有助于理解细胞过程、它们的层次结构以及系统层面上的潜在相互作用。目前,基因本体论是一个范例,通过对某些生物体的全基因组注释,选择基因子集,无论是来自高通量实验还是在探测疾病方面具有既定的关键作用,都可以作为探索其潜在功能相互联系的起点。这也有助于阐明基因之间隐藏的调控机制。通过利用本体词汇表的内部结构,将基因的功能相关性反向工程到特定的细胞途径中,反之亦然,可能有助于深入了解特定基因的关键作用的识别和优先级。所提出的图论方法在胰腺癌和 T 细胞急性淋巴细胞白血病基因集中得到了展示,包含边和 Resnik 语义相似性度量,并针对其性能进行了系统评估。

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