[Cast10] Systems Biology Workshop at ACC 2006

From: Frank Doyle (frank.doyle@icb.ucsb.edu)
Date: Mon Jan 16 2006 - 23:20:50 EST

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    ******* Workshop Announcement ****************

    Workshop on Modeling and Analysis of Biological Regulatory Networks
    American Control Conference
    Minneapolis, Minnesota USA
    June 13, 2006

    Francis J. Doyle III (University of California, Santa Barbara) and
    Michael A. Henson (University of Massachusetts, Amherst)

    Systems biology has emerged as a prominent new field that provides a
    much needed interface between the life sciences and quantitative
    disciplines including engineering and mathematics. The novelty of
    systems biology lies in the emphasis on analyzing complexity in
    networked biological systems using integrative rather than reductionist
    approaches. The aim of this workshop is to provide an introduction to a
    particular domain of systems biology to which classically trained
    control engineers have made substantial contributions: the modeling and
    analysis of cellular regulatory networks. The necessary biological
    background will be introduced by reviewing basic concepts of genetic and
    metabolic regulation as well as cellular signaling. Examples ranging
    from the generation of circadian rhythms to the regulation of energy
    metabolism will be used to illustrate modeling and analysis methods.

    Tentative Schedule

    8:30-8:45 - Course overview (Doyle)
    8:45-9:30 - Review of genetic regulation (Doyle)
    9:30-10:15 - Modeling of gene regulatory and signal transduction
    networks (Doyle)
    10:15-10:45 - Break
    10:45-11:15 - Case study: lambda phage (Doyle)
    11:15-12:00 - Case study: circadian rhythm (Doyle)
    12:00-12:30 - Case study: cell cycle (Henson)
    12:30-1:30 - Lunch
    1:30-2:15 - Review of metabolic regulation (Henson)
    2:15-3:00 - Modeling of metabolic networks (Henson)
    3:00-3:30 - Break
    3:30-4:00 - Case study: energy metabolism (Henson)
    4:00-4:45 - Metabolic flux and control analysis (Henson)
    4:45-5:30 - Case study: whole cell metabolism (Henson)

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