Dynamism in gene expression across multiple studies
Author(s) -
Alexander A. Morgan,
Joel T. Dudley,
Tarangini Deshpande,
Atul J. Butte
Publication year - 2009
Publication title -
physiological genomics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.078
H-Index - 112
eISSN - 1531-2267
pISSN - 1094-8341
DOI - 10.1152/physiolgenomics.90403.2008
Subject(s) - biology , dna microarray , dynamism , gene , gene expression , genetics , gene expression profiling , context (archaeology) , microarray analysis techniques , microarray , computational biology , regulation of gene expression , selection (genetic algorithm) , expression (computer science) , transcriptome , evolutionary biology , paleontology , physics , quantum mechanics , artificial intelligence , computer science , programming language
In this study we develop methods of examining gene expression dynamics, how and when genes change expression, and demonstrate their application in a meta-analysis involving over 29,000 microarrays. By defining measures across many experimental conditions, we have a new way of characterizing dynamics, complementary to measures looking at changes in absolute variation or breadth of tissues showing expression. We show conservation in overall patterns of dynamism across three species (human, mouse, and rat) and show associations with known disease-related genes. We discuss the enriched functional properties of the sets of genes showing different patterns of dynamics and show that the differences in expression dynamics is associated with the variety of different transcription factor regulatory sites. These results can influence thinking about the selection of genes for microarray design and the analysis of measurements of mRNA expression variation in a global context of expression dynamics across many conditions, as genes that are rarely differentially expressed between experimental conditions may be the subject of increased scrutiny when they significantly vary in expression between experimental subsets.
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