Graphical Gaussian Modeling for Gene Association Structures Based on Expression Deviation Patterns Induced by Various Chemical Stimuli(Biological Engineering)
スポンサーリンク
概要
- 論文の詳細を見る
Activity patterns of metabolic subnetworks, each of which can be regarded as a biological function module, were focused on in order to clarify biological meanings of observed deviation patterns of gene expressions induced by various chemical stimuli. We tried to infer association structures of genes by applying the multivariate statistical method called graphical Gaussian modeling to the gene expression data in a subnetwork-wise manner. It can be expected that the obtained graphical models will provide reasonable relationships between gene expressions and macroscopic biological functions. In this study, the gene expression patterns in nematodes under various conditions (stresses by chemicals such as heavy metals and endocrine disrupters) were observed using DNA microarrays. The graphical models for metabolic subnetworks were obtained from these expression data. The obtained models (independence graph) represent gene association structures of cooperativities of genes. We compared each independence graph with a corresponding metabolic subnetwork. Then we obtained a pattern that is a set of characteristic values for these graphs, and found that the pattern of heavy metals differs considerably from that of endocrine disrupters. This implies that a set of characteristic values of the graphs can representative a macroscopic biological meaning.
- 社団法人電子情報通信学会の論文
- 2006-04-01
著者
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ARIZONO Koji
Environmental and Symbiotic Sciences, Prefectural University of Kumamoto
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Tominaga Nobuaki
Department of Chemical and Biological Engineering, Ariake National College of Technology
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Kohara Yuji
Structural Biology Center National Institute Of Genetics
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MATSUNO Tetsuya
Department of Electronics,Faculty of Engineering,Kyushu University
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Arizono K
Prefectural Univ. Kumamoto Kumamoto Jpn
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Arizono Koji
Environmental And Symbiotic Sciences Prefectural University Of Kumamoto
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Arizono K
Faculty Of Pharmaceutical Sciences Nagasaki University
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冨永 伸明
Department Of Chemical And Biological Engineering Ariake National College Of Technology
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IGUCHI Taisen
Department of Bio-environmental Research, Center for Integrative Bioscience, Okazaki National Resear
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ARIZONO Koji
Division of Food and Health Environment, Faculty of Environmental and Symbiotic Sciences, Prefectura
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Tominaga Nobuaki
Department Of Biochemistry School Of Pharmaceutical Sciences Nagasaki University
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Iguchi Taisen
Crest Japan Science And Technology Agency:okazaki Institute For Integrative Bioscience National Inst
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Iguchi Taisen
Department Of Bio-enviromental Research Center For Integrative Bioscience National Institute For Bas
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Iguchi Taisen
Crest Jst Japan Science And Technology Corporation:department Of Bio-environmental Research Center F
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Iguchi T
Department Of Bio-enviromental Research Center For Integrative Bioscience National Institute For Bas
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Matsuno Tetsuya
Department Of Electronics And Information Engineering Ariake National College Of Technology
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Arizono Koji
Division Of Food And Health Environment Prefectural University Of Kumamoto
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Tominaga Nobuaki
Dep. Of Chemical And Biological Engineering Ariake National Coll. Of Technol.
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MATSUNO TETSUYA
Department of Chemistry, College of General Education, Uniuersity of Tokyo
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IGUCHI Taisen
Department of Basic Biology, Faculty of Life Science, The Graduate School for Advanced Studies (SOKENDAI), and Okazaki Institute for Integrative Bioscience, National Institute for Basic Biology, National Institutes of Natural Sciences, 5–1 Higashiyama, My
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