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Qualitative analysis of gene regulatory networks by temporal logic

机译:通过时间逻辑对基因调控网络进行定性分析

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In this article we propose a novel formalism to model and analyse gene regulatory networks using a well-established formal verification technique. We model the possible behaviours of networks by logical formulae in linear temporal logic (LTL). By checking the satisfiability of LTL, it is possible to check whether some or all behaviours satisfy a given biological property, which is difficult in quantitative analyses such as the ordinary differential equation approach. Owing to the complexity of LTL satisfiability checking, analysis of large networks is generally intractable in this method. To mitigate this computational difficulty, we developed two methods. One is a modular checking method where we divide a network into subnetworks, check them individually, and then integrate them. The other is an approximate analysis method in which we specify behaviours in simpler formulae which compress or expand the possible behaviours of networks. In the approximate method, we focused on network motifs and presented approximate specifications for them. We confirmed by experiments that both methods improved the analysis of large networks. (C) 2015 The Authors. Published by Elsevier B.V.
机译:在本文中,我们提出了一种新颖的形式主义,以使用公认的形式验证技术对基因调控网络进行建模和分析。我们通过线性时序逻辑(LTL)中的逻辑公式对网络的可能行为进行建模。通过检查LTL的可满足性,可以检查某些或所有行为是否满足给定的生物学特性,这在定量分析(例如常微分方程方法)中很困难。由于LTL可满足性检查的复杂性,使用这种方法通常难以对大型网络进行分析。为了减轻这种计算难度,我们开发了两种方法。一种是模块化检查方法,其中我们将一个网络划分为多个子网络,分别对其进行检查,然后进行集成。另一种是近似分析方法,在该方法中,我们以更简单的公式来指定行为,这些行为可以压缩或扩展网络的可能行为。在近似方法中,我们专注于网络主题,并为它们提供了近似规格。我们通过实验证实,两种方法都可以改善对大型网络的分析。 (C)2015作者。由Elsevier B.V.发布

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