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System wide cofactor turnovers can propagate metabolic stability between pathways

机译:系统范围内的辅因子转换可以传播途径之间的代谢稳定性

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Metabolic homeostasis, or low-level metabolic steady state, has long been taken for granted in metabolic engineering, and research priority has always been given to understand metabolic flux control and regulation of the reaction network. In the past, this has not caused concerns because the metabolic networks studied were invariably associated with living cells. Nowadays, there are needs to reconstruct metabolic networks, and so metabolic homeostasis cannot be taken for granted. For metabolic steady state, enzyme feedback control has been known to explain why metabolites in metabolic pathways can avoid accumulation. However, we reasoned that there are further contributing mechanisms. As a new methodology developed, we separated cofactor intermediates (CIs) from non-cofactor intermediates, and identified an appropriate type of open systems for operating putative reaction topologies. Furthermore, we elaborated the criteria to tell if a multi-enzyme over-all reaction path is of in vivo nature or not at the metabolic level. As new findings, we discovered that there are interactions between the enzyme feedback inhibition and the CI turnover, and such interactions may well lead to metabolic homeostasis, an emergent property of the system. To conclude, this work offers a new perspective for understanding the role of CIs and the presence of metabolic homeostasis in the living cell. In perspective, this work might provide clues for constructing non-natural metabolic networks using multi-enzyme reactions or by degenerating metabolic reaction networks from the living cell.
机译:在代谢工程中,代谢稳态或低水平代谢稳态一直被认为是理所当然的,并且始终优先考虑研究代谢通量的控制和反应网络的调节。过去,这没有引起任何关注,因为研究的代谢网络始终与活细胞相关。如今,有必要重建代谢网络,因此不能认为代谢稳态是理所当然的。对于代谢稳态,已知酶反馈控制可解释为什么代谢途径中的代谢物可以避免积累。但是,我们认为还有其他的贡献机制。随着新方法的发展,我们将辅因子中间体(CI)与非辅因子中间体分离开来,并确定了适用于操作推定反应拓扑的开放系统类型。此外,我们详细阐述了判别多酶整体反应路径是否具有体内性质的标准。作为新发现,我们发现酶反馈抑制与CI转换之间存在相互作用,并且这种相互作用很可能导致代谢稳态,这是系统的新兴特性。总之,这项工作为理解CI的作用以及活细胞中代谢稳态的存在提供了新的视角。从角度上讲,这项工作可能会为使用多酶反应或通过从活细胞中降解代谢反应网络来构建非天然代谢网络提供线索。

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