Genomics Inform.  2016 Mar;14(1):2-11. 10.5808/GI.2016.14.1.2.

Network-Based Protein Biomarker Discovery Platforms

Affiliations
  • 1Department of New Biology and Center for Plant Aging Research, Institute for Basic Science, Daegu Gyeongbuk Institute of Science and Technology, Daegu 42988, Korea. dhhwang@postech.ac.kr

Abstract

The advances in mass spectrometry-based proteomics technologies have enabled the generation of global proteome data from tissue or body fluid samples collected from a broad spectrum of human diseases. Comparative proteomic analysis of global proteome data identifies and prioritizes the proteins showing altered abundances, called differentially expressed proteins (DEPs), in disease samples, compared to control samples. Protein biomarker candidates that can serve as indicators of disease states are then selected as key molecules among these proteins. Recently, it has been addressed that cellular pathways can provide better indications of disease states than individual molecules and also network analysis of the DEPs enables effective identification of cellular pathways altered in disease conditions and key molecules representing the altered cellular pathways. Accordingly, a number of network-based approaches to identify disease-related pathways and representative molecules of such pathways have been developed. In this review, we summarize analytical platforms for network-based protein biomarker discovery and key components in the platforms.

Keyword

biomarkers; LC-MS/MS; network analysis; proteomics

MeSH Terms

Body Fluids
Humans
Proteome
Proteomics
Biomarkers
Proteome
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