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Quantifying the roles of space and stochasticity in computer simulations for cell biology and cellular biochemistry

机译:量化空间和随机性在细胞生物学和细胞生物化学计算机模拟中的作用

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摘要

Most of the fascinating phenomena studied in cell biology emerge from interactions among highly organized multimolecular structures embedded into complex and frequently dynamic cellular morphologies. For the exploration of such systems, computer simulation has proved to be an invaluable tool, and many researchers in this field have developed sophisticated computational models for application to specific cell biological questions. However, it is often difficult to reconcile conflicting computational results that use different approaches to describe the same phenomenon. To address this issue systematically, we have defined a series of computational test cases ranging from very simple to moderately complex, varying key features of dimensionality, reaction type, reaction speed, crowding, and cell size. We then quantified how explicit spatial and/or stochastic implementations alter outcomes, even when all methods use the same reaction network, rates, and concentrations. For simple cases, we generally find minor differences in solutions of the same problem. However, we observe increasing discordance as the effects of localization, dimensionality reduction, and irreversible enzymatic reactions are combined. We discuss the strengths and limitations of commonly used computational approaches for exploring cell biological questions and provide a framework for decision making by researchers developing new models. As computational power and speed continue to increase at a remarkable rate, the dream of a fully comprehensive computational model of a living cell may be drawing closer to reality, but our analysis demonstrates that it will be crucial to evaluate the accuracy of such models critically and systematically.
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著录项

  • 来源
    《Molecular biology of the cell》 |2021年第2期|共25页
  • 作者单位

    Johns Hopkins Univ Thomas C Jenkins Dept Biophys Baltimore MD 21218 USA;

    Johns Hopkins Univ Thomas C Jenkins Dept Biophys Baltimore MD 21218 USA;

    Univ Pittsburgh Sch Med Dept Computat &

    Syst Biol Pittsburgh PA 15260 USA;

    Univ Rostock Inst Visual &

    Analyt Comp D-18055 Rostock Germany;

    Univ Connecticut Ctr Hlth Dept Cell Biol Ctr Cell Anal &

    Modeling Farmington CT 06030 USA;

    NIAID Lab Immune Syst Biol NIH 9000 Rockville Pike Bethesda MD 20892 USA;

    Carnegie Mellon Univ Computat Biol Dept Dept Biol Sci Dept Biomed Engn Machine Learning Dept Pittsburgh PA 15289 USA;

    NIAID Lab Immune Syst Biol NIH 9000 Rockville Pike Bethesda MD 20892 USA;

    Univ Washington Dept Biol Seattle WA 98195 USA;

    Univ Rostock Inst Visual &

    Analyt Comp D-18055 Rostock Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
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