Literature DB >> 26086598

Model reduction for stochastic CaMKII reaction kinetics in synapses by graph-constrained correlation dynamics.

Todd Johnson1, Tom Bartol, Terrence Sejnowski, Eric Mjolsness.   

Abstract

A stochastic reaction network model of Ca(2+) dynamics in synapses (Pepke et al PLoS Comput. Biol. 6 e1000675) is expressed and simulated using rule-based reaction modeling notation in dynamical grammars and in MCell. The model tracks the response of calmodulin and CaMKII to calcium influx in synapses. Data from numerically intensive simulations is used to train a reduced model that, out of sample, correctly predicts the evolution of interaction parameters characterizing the instantaneous probability distribution over molecular states in the much larger fine-scale models. The novel model reduction method, 'graph-constrained correlation dynamics', requires a graph of plausible state variables and interactions as input. It parametrically optimizes a set of constant coefficients appearing in differential equations governing the time-varying interaction parameters that determine all correlations between variables in the reduced model at any time slice.

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Year:  2015        PMID: 26086598      PMCID: PMC4489159          DOI: 10.1088/1478-3975/12/4/045005

Source DB:  PubMed          Journal:  Phys Biol        ISSN: 1478-3967            Impact factor:   2.583


  16 in total

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