• Title of article

    Trading the micro-world of combinatorial complexity for the macro-world of protein interaction domains

  • Author/Authors

    Nikolay M. Borisov، نويسنده , , Nick I. Markevich، نويسنده , , Jan B. Hoek، نويسنده , , Boris N. Kholodenko، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    15
  • From page
    152
  • To page
    166
  • Abstract
    Membrane receptors and proteins involved in signal transduction display numerous binding domains and operate as molecular scaffolds generating a variety of parallel reactions and protein complexes. The resulting combinatorial explosion of the number of feasible chemical species and, hence, different states of a network greatly impedes mechanistic modeling of signaling systems. Here we present novel general principles and identify kinetic requirements that allow us to replace a mechanistic picture of all possible micro-states and transitions by a macro-description of states of separate binding sites of network proteins. This domain-oriented approach dramatically reduces computational models of cellular signaling networks by dissecting mechanistic trajectories into the dynamics of macro- and meso-variables. We specify the conditions when the temporal dynamics of micro-states can be exactly or approximately expressed in terms of the product of the relative concentrations of separate domains. We prove that our macro-modeling approach equally applies to signaling systems with low population levels, analyzed by stochastic rather than deterministic equations. Thus, our results greatly facilitate quantitative analysis and computational modeling of multi-protein signaling networks.
  • Keywords
    Scaffold , Tyrosine kinase receptor , Adapter protein , time series , Complex signaling networks , Model reduction
  • Journal title
    BioSystems
  • Serial Year
    2006
  • Journal title
    BioSystems
  • Record number

    497692