Güell Oriol, Sagués Francesc, Serrano M Ángeles
Departament de Ciència dels Materials i Química Física, Universitat de Barcelona, Spain.
Department de Física de la Matèria Condensada, Universitat de Barcelona, Spain.
FEBS Lett. 2017 May;591(10):1437-1451. doi: 10.1002/1873-3468.12650. Epub 2017 May 2.
The heterogeneity of computationally predicted reaction fluxes in metabolic networks within a single flux state can be exploited to detect their significant flux backbone. Here, we disclose the backbone of Escherichia coli, and compare it with the backbones of other bacteria. We find that, in general, the core of the backbones is mainly composed of reactions in energy metabolism corresponding to ancient pathways. In E. coli, the synthesis of nucleotides and the metabolism of lipids form smaller cores which rely critically on energy metabolism. Moreover, the consideration of different media leads to the identification of pathways sensitive to environmental changes. The metabolic backbone of an organism is thus useful to trace simultaneously both its evolution and adaptation fingerprints.
在单一通量状态下,代谢网络中通过计算预测的反应通量的异质性可用于检测其重要的通量主干。在此,我们揭示了大肠杆菌的通量主干,并将其与其他细菌的通量主干进行比较。我们发现,一般来说,通量主干的核心主要由与古老途径相对应的能量代谢反应组成。在大肠杆菌中,核苷酸的合成和脂质的代谢形成较小的核心,这些核心严重依赖于能量代谢。此外,考虑不同的培养基会导致识别出对环境变化敏感的途径。因此,生物体的代谢主干对于同时追踪其进化和适应印记很有用。