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结核分枝杆菌营养灵活性的代谢通量。

Metabolic fluxes for nutritional flexibility of Mycobacterium tuberculosis.

机构信息

Department of Microbial and Cellular Sciences, Faculty of Health and Medical Sciences, University of Surrey, Guildford, UK.

Department of Computational and Analytical Sciences, Rothamsted Research, Harpenden, UK.

出版信息

Mol Syst Biol. 2021 May;17(5):e10280. doi: 10.15252/msb.202110280.

Abstract

The co-catabolism of multiple host-derived carbon substrates is required by Mycobacterium tuberculosis (Mtb) to successfully sustain a tuberculosis infection. However, the metabolic plasticity of this pathogen and the complexity of the metabolic networks present a major obstacle in identifying those nodes most amenable to therapeutic interventions. It is therefore critical that we define the metabolic phenotypes of Mtb in different conditions. We applied metabolic flux analysis using stable isotopes and lipid fingerprinting to investigate the metabolic network of Mtb growing slowly in our steady-state chemostat system. We demonstrate that Mtb efficiently co-metabolises either cholesterol or glycerol, in combination with two-carbon generating substrates without any compartmentalisation of metabolism. We discovered that partitioning of flux between the TCA cycle and the glyoxylate shunt combined with a reversible methyl citrate cycle is the critical metabolic nodes which underlie the nutritional flexibility of Mtb. These findings provide novel insights into the metabolic architecture that affords adaptability of bacteria to divergent carbon substrates and expand our fundamental knowledge about the methyl citrate cycle and the glyoxylate shunt.

摘要

结核分枝杆菌(Mtb)需要共分解多种宿主来源的碳底物,才能成功维持结核感染。然而,这种病原体的代谢可塑性和存在的代谢网络的复杂性是识别最适合治疗干预的节点的主要障碍。因此,我们必须在不同条件下定义 Mtb 的代谢表型。我们应用稳定同位素和脂质指纹分析进行代谢通量分析,以研究在我们的稳态恒化器系统中缓慢生长的 Mtb 的代谢网络。我们证明 Mtb 可以有效地共代谢胆固醇或甘油,同时与产生二碳的底物一起,而无需代谢的任何分隔。我们发现,三羧酸循环和乙醛酸支路之间的通量分配以及可逆的甲基柠檬酸循环是关键的代谢节点,它们是 Mtb 营养灵活性的基础。这些发现为赋予细菌对不同碳底物适应性的代谢结构提供了新的见解,并扩展了我们对甲基柠檬酸循环和乙醛酸支路的基本认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c41/8094261/ec3eb3cf10c2/MSB-17-e10280-g012.jpg

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