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用表示图刻画基因调控网络中的行为分化。

Characterizing behavioural differentiation in gene regulatory networks with representation graphs.

作者信息

Viksna Juris, Cerans Karlis, Lace Lelde, Melkus Gatis

机构信息

Institute of Mathematics and Computer Science, University of Latvia, Raina bulvaris 29, Riga LV1459, Latvia.

出版信息

NAR Genom Bioinform. 2024 Aug 9;6(3):lqae102. doi: 10.1093/nargab/lqae102. eCollection 2024 Sep.

Abstract

We introduce the formal notion of representation graphs, encapsulating the state space structure of gene regulatory network models in a compact and concise form that highlights the most significant features of stable states and differentiation processes leading to distinct stability regions. The concept has been developed in the context of a hybrid system-based gene network modelling framework; however, we anticipate that it can also be adapted to other approaches of modelling gene networks in discrete terms. We describe a practical algorithm for representation graph computation as well as two case studies demonstrating their real-world application and utility. The first case study presents models for three phage viruses. It shows that the process of differentiation into lytic and lysogenic behavioural states for all these models is described by the same representation graph despite the distinctive underlying mechanisms for differentiation. The second case study shows the advantages of our approach for modelling the process of myeloid cell differentiation from a common progenitor into different cell types. Both case studies also demonstrate the potential of the representation graph approach for deriving and validating hypotheses about regulatory interactions that must be satisfied for biologically viable behaviours.

摘要

我们引入了表示图的形式化概念,以紧凑简洁的形式封装基因调控网络模型的状态空间结构,突出稳定状态和导致不同稳定区域的分化过程的最重要特征。该概念是在基于混合系统的基因网络建模框架的背景下发展起来的;然而,我们预计它也可以适用于以离散方式建模基因网络的其他方法。我们描述了一种用于表示图计算的实用算法以及两个案例研究,展示了它们在实际中的应用和效用。第一个案例研究展示了三种噬菌体病毒的模型。结果表明,尽管这些模型的分化潜在机制不同,但它们向裂解和溶原行为状态的分化过程都由相同的表示图描述。第二个案例研究展示了我们的方法在模拟髓样细胞从共同祖细胞分化为不同细胞类型过程中的优势。这两个案例研究还展示了表示图方法在推导和验证关于生物学上可行行为必须满足的调控相互作用假设方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1db3/11310862/536f6b6e221a/lqae102fig1.jpg

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