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Understanding LrgAB Regulation of Metabolism. | LitMetric

Understanding LrgAB Regulation of Metabolism.

Front Microbiol

Department of Oral Biology, College of Dentistry, University of Florida, Gainesville, FL, United States.

Published: September 2020

AI Article Synopsis

  • - LrgAB deficiency in cariogenic strains increases sensitivity to oxidative stress and limits their ability to re-uptake pyruvate during starvation, impacting their competitive fitness.
  • - Supplementing pyruvate can restore impaired aerobic growth in LrgAB-deficient mutants and influences pyruvate metabolism via the Pdh pathway, indicating LrgAB's key role in pyruvate catabolism.
  • - Competitive assays suggest LrgAB aids in interactions against certain bacteria in the oral cavity, though no significant disadvantage was seen in a mouse caries model, emphasizing the influence of oral microbiota on bacterial competition and niche establishment.

Article Abstract

Lack of LrgAB renders cariogenic more sensitive to oxidative stress, as well as limits the capacity of this organism to re-uptake pyruvate upon starvation. This study was aimed at investigating the ecological and metabolic contribution of LrgAB to competitive fitness, using strains, that either lack or overexpress . These experiments revealed that impaired aerobic growth of the Δ mutant can be effectively restored by supplementation of pyruvate, and that perturbated expression of significantly affects pyruvate flux and the conversion of pyruvate to acetyl-CoA by the Pdh pathway, verifying that LrgAB is closely linked to pyruvate catabolism. competition assays revealed that LrgAB plays an important role in competition with HO-producing , an interaction which can also be modulated by external pyruvate. However, no obvious competitive disadvantage was observed against by either the mutant or overexpression strain using a mouse caries model. Organic acid analysis of mouse dental biofilms revealed that metabolites produced by the host and/or dental plaque microbiota could complement the deficiency of a mutant, and favored establishment compared to . Collectively, these results reinforce the importance of the oral microbiota and the metabolic environment in the oral cavity battleground, and highlight that pyruvate uptake through LrgAB may be crucial for interspecies competition that drives niche occupancy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7496758PMC
http://dx.doi.org/10.3389/fmicb.2020.02119DOI Listing

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