AI Article Synopsis

  • The study looks at how a certain microorganism adapts its metabolism when faced with harsh conditions inside host macrophages, which are cells that fight infections.
  • Researchers used advanced techniques to identify 87 different metabolites, which are small molecules involved in metabolism, and found new ways the microorganism adjusts its metabolism when stressed.
  • The findings suggest important strategies for future treatments and show the benefits of combining different scientific methods to understand how microorganisms adapt to tough environments.

Article Abstract

Metabolic adaptation of () to microbicidal intracellular environment of host macrophages is fundamental to its pathogenicity. However, an in-depth understanding of metabolic adjustments through key reaction pathways and networks is limited. To understand how such changes occur, we measured the cellular metabolome of subjected to four microbicidal stresses using liquid chromatography-mass spectrometric multiple reactions monitoring (LC-MRM/MS). Overall, 87 metabolites were identified. The metabolites best describing the separation between stresses were identified through multivariate analysis. The coupling of the metabolite measurements with existing genome-scale metabolic model, and using constraint-based simulation led to several new concepts and unreported observations in ; such as (i) the high levels of released ammonia as an adaptive response to acidic stress was due to increased flux through L-asparaginase rather than urease activity; (ii) nutrient starvation-induced anaplerotic pathway for generation of TCA intermediates from phosphoenolpyruvate using phosphoenolpyruvate kinase; (iii) quenching of protons through GABA shunt pathway or sugar alcohols as possible mechanisms of early adaptation to acidic and oxidative stresses; and (iv) usage of alternate cofactors by the same enzyme as a possible mechanism of rewiring metabolic pathways to overcome stresses. Besides providing new leads and important nodes that can be used for designing intervention strategies, the study advocates the strength of applying flux balance analyses coupled with metabolomics to get a global picture of complex metabolic adjustments.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6828651PMC
http://dx.doi.org/10.3389/fmicb.2019.02417DOI Listing

Publication Analysis

Top Keywords

rewiring metabolic
8
metabolic adjustments
8
stresses
5
metabolic
5
metabolic network
4
network adaptation
4
adaptation stresses
4
stresses metabolic
4
metabolic adaptation
4
adaptation microbicidal
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!