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Molecular biology / DNA / Networks / Gene regulatory network / Boolean network / Gene / Promoter / Regulation of gene expression / Transcription factor / Biology / Gene expression / Genetics


A Model of Transcriptional Regulatory Networks Based on Biases in the Observed Regulation Rules STEPHEN E. HARRIS, 1 BRUCE K. SAWHILL, 2 ANDREW WUENSCHE, 3 AND STUART KAUFFMAN 2 1
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Document Date: 2008-05-05 08:00:09


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City

Kansas City / Santa Fe / /

Company

Complex Systems / 2The Bios Group / B3b / 3Discrete Dynamics Inc. / Wiley Periodicals Inc. / /

Event

Natural Disaster / /

Facility

University of Missouri / Santa Fe Institute / /

IndustryTerm

near power-law distribution / Genetic regulatory networks / ordered nontrivial network / transcriptional regulatory networks / genetic networks / ordered networks / gene microarray technology / gene regulatory network / business to business / large model transcriptional regulatory networks / wired networks / biological systems / gene regulatory networks / model genetic network / Representative gene networks / transcriptional systems / eukaryotic gene networks / continuous systems / chemical simplicity / dynamical systems / ranscriptional regulatory networks / genomic regulatory systems / /

Organization

University of Missouri at Kansas City / U.S. Department of Energy / National Science Foundation / /

Person

Andreas Wagner / Gene Activities / /

Position

Major / Representative / forward / reporter / /

ProvinceOrState

Missouri / New Mexico / /

PublishedMedium

Complex Systems / /

Technology

DNA Chip / gene expression / cell signaling / gene microarray technology / human genome / /

URL

www.dlab.com / /

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