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Role of glutamate metabolism in bacterial responses towards acid and other stresses

Journal of Applied Microbiology · 2012 · Vol. 114(1) · pp. 11–24
Conor FeehilyKimon Andreas G. Karatzas

Abstract

Glutamate plays a central role in a wide range of metabolic processes in bacterial cells. This review focuses on the involvement of glutamate in bacterial stress responses. In particular, it reviews the role of glutamate metabolism in response against acid stress and other stresses. The glutamate decarboxylase (GAD) system has been implicated in acid tolerance in several bacterial genera. This system facilitates intracellular pH homoeostasis by consuming protons in a decarboxylation reaction that produces γ‐aminobutyrate (GABA) from glutamate. An antiporter system is usually present to couple the uptake of glutamate to the efflux of GABA. Recent insights into the functioning of this system will be discussed. Finally, the intracellular fate of GABA will also be discussed. Many bacteria are capable of metabolizing GABA to succinate via the GABA shunt pathway. The role and regulation of this pathway will be addressed in the review.

GABA and Rice ResearchProbiotics and Fermented FoodsBiochemical Analysis and Sensing TechniquesGlutamate receptorGlutamate decarboxylaseDecarboxylationIntracellularEffluxBiochemistryMetabolismBiologyBacteriaAntiporter

Funding

  • Science Foundation Ireland
  • University of Galway
Citations
433
FWCI
13.28
field-weighted impact
References
98
Percentile
99%
vs. same field & year
Citations per year
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