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Ключевое слово systems_approach [32 articles]

Recent papers classified by the tag systems_approach.
  • Motifs, themes and thematic maps of an integrated Saccharomyces cerevisiae interaction network.
    J Biol, Vol. 4, No. 2. (2005)
    by LV Zhang, OD King, SL Wong, DS Goldberg, AH Tong, G Lesage, B Andrews, H Bussey, C Boone, FP Roth
  • Multiple functions of a feed-forward-loop gene circuit.
    J Mol Biol, Vol. 349, No. 3. (10 June 2005), pp. 501-514.
    by ME Wall, MJ Dunlop, WS Hlavacek
  • Computational Analysis of Biochemical Systems : A Practical Guide for Biochemists and Molecular Biologists
    (04 September 2000)
    by Eberhard O Voit
  • Multiple High-Throughput Analyses Monitor the Response of E. coli to Perturbations
    Science, Vol. 316, No. 5824. (27 April 2007), pp. 593-597.
    by Nobuyoshi Ishii, Kenji Nakahigashi, Tomoya Baba, Martin Robert, Tomoyoshi Soga, Akio Kanai, Takashi Hirasawa, Miki Naba, Kenta Hirai, Aminul Hoque, Pei Y Ho, Yuji Kakazu, Kaori Sugawara, Saori Igarashi, Satoshi Harada, Takeshi Masuda, Naoyuki Sugiyama, Takashi Togashi, Miki Hasegawa, Yuki Takai, Katsuyuki Yugi, Kazuharu Arakawa, Nayuta Iwata, Yoshihiro Toya, Yoichi Nakayama, Takaaki Nishioka, Kazuyuki Shimizu, Hirotada Mori, Masaru Tomita
  • Subunit structure of regulator proteins influences the design of gene circuitry: analysis of perfectly coupled and completely uncoupled circuits.
    J Mol Biol, Vol. 248, No. 4. (12 May 1995), pp. 739-755.
    by WS Hlavacek, MA Savageau
  • Requirement for multiple activation signals by anti-inflammatory feedback in macrophages.
    J Theor Biol, Vol. 241, No. 2. (21 July 2006), pp. 276-294.
    by JC Ray, DE Kirschner
  • Chemical combination effects predict connectivity in biological systems
    Mol Syst Biol, Vol. 3 (27 February 2007)
    by Joseph Lehar, Grant R Zimmermann, Andrew S Krueger, Raymond A Molnar, Jebediah T Ledell, Adrian M Heilbut, Glenn F Short, Leanne C Giusti, Garry P Nolan, Omar A Magid, Margaret S Lee, Alexis A Borisy, Brent R Stockwell, Curtis T Keith
  • Modeling network dynamics: the lac operon, a case study.
    J Cell Biol, Vol. 161, No. 3. (12 May 2003), pp. 471-476.
    by JM Vilar, CC Guet, S Leibler
  • The use of oscillatory signals in the study of genetic networks.
    Proc Natl Acad Sci U S A (9 May 2005)
    by Ovidiu Lipan, Wing H H Wong
  • Quantifying the relevance of different mediators in the human immune cell network.
    Bioinformatics, Vol. 21, No. 8. (15 April 2005), pp. 1639-1643.
  • A new measure of the robustness of biochemical networks.
    Bioinformatics, Vol. 21, No. 11. (1 June 2005), pp. 2698-2705.
    by BS Chen, YC Wang, WS Wu, WH Li
  • Rules for modeling signal-transduction systems.
    Sci STKE, Vol. 2006, No. 344. (17 July 2006)
    by WS Hlavacek, JR Faeder, ML Blinov, RG Posner, M Hucka, W Fontana
  • A Systems Approach to Measuring the Binding Energy Landscapes of Transcription Factors
    Science, Vol. 315, No. 5809. (12 January 2007), pp. 233-237.
    by Sebastian J Maerkl, Stephen R Quake
  • Alternative designs for a genetic switch: analysis of switching times using the piecewise power-law representation.
    Math Biosci, Vol. 180 (c 2002), pp. 237-253.
    by MA Savageau
  • Variability and memory of protein levels in human cells
    Nature (19 November 2006)
    by Alex Sigal, Ron Milo, Ariel Cohen, Naama Geva-Zatorsky, Yael Klein, Yuvalal Liron, Nitzan Rosenfeld, Tamar Danon, Natalie Perzov, Uri Alon
  • Rules for coupled expression of regulator and effector genes in inducible circuits.
    J Mol Biol, Vol. 255, No. 1. (12 January 1996), pp. 121-139.
    by WS Hlavacek, MA Savageau
  • Robustness of cellular functions.
    Cell, Vol. 118, No. 6. (17 September 2004), pp. 675-685.
    by J Stelling, U Sauer, Z Szallasi, FJ Doyle, J Doyle
  • Dual feedback loops in the GAL regulon suppress cellular heterogeneity in yeast
    Nature Genetics, Vol. 38, No. 9. (27 August 2006), pp. 1082-1087.
    by Stephen A Ramsey, Jennifer J Smith, David Orrell, Marcello Marelli, Timothy W Petersen, Pedro de Atauri, Hamid Bolouri, John D Aitchison
  • GeneNet database: description and modeling of gene networks.
    In Silico Biol, Vol. 2, No. 2. (2002), pp. 97-110.
  • Design principles for elementary gene circuits: Elements, methods, and examples.
    Chaos, Vol. 11, No. 1. (March 2001), pp. 142-159.
    by Michael A. A Savageau
  • Biochemical systems analysis. I. Some mathematical properties of the rate law for the component enzymatic reactions.
    J Theor Biol, Vol. 25, No. 3. (December 1969), pp. 365-369.
    by MA Savageau
  • Computational analysis of the synergy among multiple interacting genes
    Mol Syst Biol, Vol. 3 (13 February 2007)
    by Dimitris Anastassiou
  • An evolutionary and functional assessment of regulatory network motifs.
    Genome Biol, Vol. 6, No. 4. (2005)
  • Hierarchy and feedback in the evolution of the Escherichia coli transcription network
    PNAS, Vol. 104, No. 13. (27 March 2007), pp. 5516-5520.
  • Improved methods for the mathematically controlled comparison of biochemical systems.
    Theor Biol Med Model, Vol. 1, No. 1. (4 June 2004)
    by John H Schwacke, Eberhard O Voit
  • Completely uncoupled and perfectly coupled gene expression in repressible systems.
    J Mol Biol, Vol. 266, No. 3. (28 February 1997), pp. 538-558.
    by WS Hlavacek, MA Savageau
  • Promoter Crosstalk Effects on Gene Expression
    Journal of Molecular Biology, Vol. 365, No. 4. (26 January 2007), pp. 911-920.
    by Mathias Hampf, Manfred Gossen
  • An Introduction to Systems Biology: Design Principles of Biological Circuits (Chapman & Hall/Crc Mathematical and Computational Biology Series)
    (07 July 2006)
    by Uri Alon
  • Network motifs in the transcriptional regulation network of Escherichia coli
    Nat Genet, Vol. 31, No. 1. (May 2002), pp. 64-68.
    by Shai S Shen-Orr, Ron Milo, Shmoolik Mangan, Uri Alon
  • Modularity and Dynamics of Cellular Networks
    PLoS Computational Biology, Vol. 2, No. 12. (1 December 2006), e174.
    by Yuan Qi, Hui Ge
  • Demand theory of gene regulation. II. Quantitative application to the lactose and maltose operons of Escherichia coli.
    Genetics, Vol. 149, No. 4. (August 1998), pp. 1677-1691.
    by MA Savageau
  • Key Role of Local Regulation in Chemosensing Revealed by a New Molecular Interaction-Based Modeling Method
    PLoS Computational Biology, Vol. 2, No. 7. (1 July 2006), e82.
    by Martin Meier-Schellersheim, Xuehua Xu, Bastian Angermann, Eric J Kunkel, Tian Jin, Ronald N Germain
    posted to mathematical_model signaling systems_approach theory by jjray on 2007-02-22 19:33:01 as ***
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