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首页> 外文期刊>IEEE/ACM transactions on computational biology and bioinformatics >Composable Rate-Independent Computation in Continuous Chemical Reaction Networks
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Composable Rate-Independent Computation in Continuous Chemical Reaction Networks

机译:连续化学反应网络中可组合的速率无关计算

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Biological regulatory networks depend upon chemical interactions to process information. Engineering such molecular computing systems is a major challenge for synthetic biology and related fields. The chemical reaction network (CRN) model idealizes chemical interactions, allowing rigorous reasoning about the computational power of chemical kinetics. Here we focus on function computation with CRNs, where we think of the initial concentrations of some species as the input and the equilibrium concentration of another species as the output. Specifically, we are concerned with CRNs that are rate-independent (the computation must be correct independent of the reaction rate law) and composable (f circle g can be computed by concatenating the CRNs computing f and g). Rate independence and composability are important engineering desiderata, permitting implementations that violate mass-action kinetics, or even "well-mixedness", and allowing the systematic construction of complex computation via modular design. We show that to construct composable rate-independent CRNs, it is necessary and sufficient to ensure that the output species of a module is not a reactant in any reaction within the module. We then exactly characterize the functions computable by such CRNs as superadditive, positive-continuous, and piecewise rational linear. Thus composability severely limits rate-independent computation unless more sophisticated input/output encodings are used.
机译:生物监管网络取决于化学相互作用以处理信息。工程这些分子计算系统是合成生物学和相关领域的主要挑战。化学反应网络(CRN)模型理想化化学相互作用,允许对化学动力学的计算能力进行严格的推理。在这里,我们专注于用CRN的功能计算,在那里我们认为某些物种的初始浓度为作为输出的另一种物种的输入和平衡浓度。具体而言,我们涉及速率独立的CRN(计算必须独立于反应率定律,可以通过连接CRNS计算F和G)来计算可组合物(F圆G)。速率独立性和可组合性是重要的工程探索图,允许违反大规模动作动力学的实现,甚至是“良好的混合”,并通过模块化设计来系统地构造复杂的计算。我们表明,要构建可合作速率无关的CRN,是必要的并且足以确保模块的输出物种不是模块内任何反应中的反应物。然后,我们精确地表征了这种CRNS作为超等,正连续和分段合理的线性可计算的功能。因此,除非使用更复杂的输入/输出编码,否则可分类性严重限制了速率无关的计算。

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