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Tutorial on biological networks

delete2012-06-22
delete14
PRE
AI
F
Francisco G Vital-Lopez
V
Vesna Memišević
B
Bhaskar Dutta *
DOI:10.1002/widm.1061delete
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Abstract

Abstract

En 中文
Understanding how the functioning of a biological system emerges from the interactions among its components is a long-standing goal of network science. Fomented by developments in high-throughput technologies to characterize biomolecules and their interactions, network science has emerged as one of the fastest growing areas in computational and systems biology research. Although the number of research and review articles on different aspects of network science is increasing, updated resources that provide a broad, yet concise, review of this area in the context of systems biology are few. The objective of this article is to provide an overview of the research on biological networks to a general audience, who have some knowledge of biology and statistics, but are not necessarily familiar with this research field. Based on the different aspects of network science research, the article is broadly divided into four sections: (1) network construction, (2) topological analysis, (3) network and data integration, and (4) visualization tools. We specifically focused on the most widely studied types of biological networks, which are, metabolic, gene regulatory, proteinprotein interaction, genetic interaction, and signaling networks. In future, with further developments on experimental and computational methods, we expect that the analysis of biological networks will assume a leading role in basic and translational research. (c) 2012 Wiley Periodicals, Inc.
Keywords:
PROTEIN-INTERACTION NETWORKS
ONLINE MENDELIAN INHERITANCE
GENETIC INTERACTION NETWORKS
SCALE-FREE NETWORKS
SYSTEMS BIOLOGY
INTERACTION MAP
SACCHAROMYCES-CEREVISIAE
COMPUTATIONAL METHODS
REGULATORY NETWORK
SIGNALING NETWORKS
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Journal

Wiley Interdisciplinary Reviews-Data Mining and Knowledge Discovery cover
Wiley Interdisciplinary Reviews-Data Mining and Knowledge Discovery
IF:
11.7
Papers:
537
Citations:
5.3K

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