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Review and application of group theory to molecular systems biology

机译:群论在分子系统生物学中的回顾与应用

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摘要

In this paper we provide a review of selected mathematical ideas that can help us better understand the boundary between living and non-living systems. We focus on group theory and abstract algebra applied to molecular systems biology. Throughout this paper we briefly describe possible open problems. In connection with the genetic code we propose that it may be possible to use perturbation theory to explore the adjacent possibilities in the 64-dimensional space-time manifold of the evolving genome.With regards to algebraic graph theory, there are several minor open problems we discuss. In relation to network dynamics and groupoid formalism we suggest that the network graph might not be the main focus for understanding the phenotype but rather the phase space of the network dynamics. We show a simple case of a C6 network and its phase space network. We envision that the molecular network of a cell is actually a complex network of hypercycles and feedback circuits that could be better represented in a higher-dimensional space. We conjecture that targeting nodes in the molecular network that have key roles in the phase space, as revealed by analysis of the automorphism decomposition, might be a better way to drug discovery and treatment of cancer.
机译:在本文中,我们提供了一些数学思想的综述,这些思想可以帮助我们更好地理解有生命和无生命系统之间的界限。我们专注于应用于分子系统生物学的群论和抽象代数。在本文中,我们简要描述了可能存在的开放性问题。结合遗传密码,我们建议可以使用扰动理论来探索进化基因组的64维时空流形中的相邻可能性。关于代数图论,我们有几个小问题讨论。关于网络动力学和类群形式主义,我们建议网络图可能不是理解表型的主要焦点,而是网络动力学的相空间。我们展示了一个C6网络及其相空间网络的简单案例。我们设想,细胞的分子网络实际上是超循环和反馈电路的复杂网络,可以在更高维度的空间中更好地表示。我们推测,针对分子网络中在相空间中具有关键作用的节点,如通过对同构分解的分析所揭示的那样,可能是药物发现和治疗癌症的更好方法。

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