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Glyoxalase 1 increases anxiety by reducing GABAA receptor agonist methylglyoxal
Margaret G. Distler, Leigh D. Plant, Greta Sokoloff, Andrew J. Hawk, Ivy Aneas, Gerald E. Wuenschell, John Termini, Stephen C. Meredith, Marcelo A. Nobrega, Abraham A. Palmer
Margaret G. Distler, Leigh D. Plant, Greta Sokoloff, Andrew J. Hawk, Ivy Aneas, Gerald E. Wuenschell, John Termini, Stephen C. Meredith, Marcelo A. Nobrega, Abraham A. Palmer
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Research Article Neuroscience

Glyoxalase 1 increases anxiety by reducing GABAA receptor agonist methylglyoxal

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Abstract

Glyoxalase 1 (Glo1) expression has previously been associated with anxiety in mice; however, its role in anxiety is controversial, and the underlying mechanism is unknown. Here, we demonstrate that GLO1 increases anxiety by reducing levels of methylglyoxal (MG), a GABAA receptor agonist. Mice overexpressing Glo1 on a Tg bacterial artificial chromosome displayed increased anxiety-like behavior and reduced brain MG concentrations. Treatment with low doses of MG reduced anxiety-like behavior, while higher doses caused locomotor depression, ataxia, and hypothermia, which are characteristic effects of GABAA receptor activation. Consistent with these data, we found that physiological concentrations of MG selectively activated GABAA receptors in primary neurons. These data indicate that GLO1 increases anxiety by reducing levels of MG, thereby decreasing GABAA receptor activation. More broadly, our findings potentially link metabolic state, neuronal inhibitory tone, and behavior. Finally, we demonstrated that pharmacological inhibition of GLO1 reduced anxiety, suggesting that GLO1 is a possible target for the treatment of anxiety disorders.

Authors

Margaret G. Distler, Leigh D. Plant, Greta Sokoloff, Andrew J. Hawk, Ivy Aneas, Gerald E. Wuenschell, John Termini, Stephen C. Meredith, Marcelo A. Nobrega, Abraham A. Palmer

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Figure 3

MG regulates anxiety-like behavior.

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MG regulates anxiety-like behavior.
(A) GLO1 enzymatic activity in whole...
(A) GLO1 enzymatic activity in whole brain (n = 3 WT and 3 Tg). (B and C) HPLC measurement of MG concentration in whole brain. (B) Representative chromatograms from WT (solid) and Tg (dashed) mice. An enlarged view of the relevant peak is shown in the inset. (C) Average MG concentration (n = 9 WT and 8 Tg). (D) HPLC measurement of MG concentration in whole brain after i.p. treatment with MG. Assay order had a significant effect on MG concentration and was used as a covariate in a 1-way analysis of covariance (ANCOVA) for the factor treatment (n = 4–7 per group). P = 0.009. (E and F) MG decreased anxiety-like behavior in the OF test. MG (50 mg/kg) (E) increased time in the center of the OF but (F) did not change total distance traveled (n = 18 per group). mAU, milli absorbance units. Data are mean ± SEM. *P < 0.05, **P < 0.0005.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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