» Articles » PMID: 21361730

Oxygen-inducible Glutamate Oxaloacetate Transaminase As Protective Switch Transforming Neurotoxic Glutamate to Metabolic Fuel During Acute Ischemic Stroke

Overview
Specialty Endocrinology
Date 2011 Mar 3
PMID 21361730
Citations 23
Authors
Affiliations
Soon will be listed here.
Abstract

This work rests on our previous report (J Cereb Blood Flow Metab 30: 1275-1287, 2010) recognizing that glutamate (Glu) oxaloacetate transaminase (GOT) is induced when brain tissue hypoxia is corrected during acute ischemic stroke (AIS). GOT can metabolize Glu into tricarboxylic acid cycle intermediates and may therefore be useful to harness excess neurotoxic extracellular Glu during AIS as a metabolic substrate. We report that in cultured neural cells challenged with hypoglycemia, extracellular Glu can support cell survival as long as there is sufficient oxygenation. This effect is abrogated by GOT knockdown. In a rodent model of AIS, supplemental oxygen (100% O(2) inhaled) during ischemia significantly increased GOT expression and activity in the stroke-affected brain tissue and prevented loss of ATP. Biochemical analyses and in vivo magnetic resonance spectroscopy during stroke demonstrated that such elevated GOT decreased Glu levels at the stroke-affected site. In vivo lentiviral gene delivery of GOT minimized lesion volume, whereas GOT knockdown worsened stroke outcomes. Thus, brain tissue GOT emerges as a novel target in managing stroke outcomes. This work demonstrates that correction of hypoxia during AIS can help clear extracellular neurotoxic Glu by enabling utilization of this amino acid as a metabolic fuel to support survival of the hypoglycemic brain tissue. Strategies to mitigate extracellular Glu-mediated neurodegeneration via blocking receptor-mediated excitotoxicity have failed in clinical trials. We introduce the concept that under hypoglycemic conditions extracellular Glu can be transformed from a neurotoxin to a survival factor by GOT, provided there is sufficient oxygen to sustain cellular respiration.

Citing Articles

Preclinical validation of human recombinant glutamate-oxaloacetate transaminase for the treatment of acute ischemic stroke.

Perez-Mato M, Dopico-Lopez A, Akkoc Y, Lopez-Amoedo S, Correa-Paz C, Candamo-Lourido M iScience. 2024; 27(11):111108.

PMID: 39524351 PMC: 11543921. DOI: 10.1016/j.isci.2024.111108.


Biomarkers and the outcomes of ischemic stroke.

Huang Y, Wang Z, Huang Z, Liu Z Front Mol Neurosci. 2023; 16:1171101.

PMID: 37342100 PMC: 10277488. DOI: 10.3389/fnmol.2023.1171101.


Inducible miR-1224 silences cerebrovascular Serpine1 and restores blood flow to the stroke-affected site of the brain.

Palakurti R, Biswas N, Roy S, Gnyawali S, Sinha M, Singh K Mol Ther Nucleic Acids. 2023; 31:276-292.

PMID: 36726407 PMC: 9868883. DOI: 10.1016/j.omtn.2022.12.019.


Glutamate Scavenging as a Neuroreparative Strategy in Ischemic Stroke.

Kaplan-Arabaci O, Acari A, Ciftci P, Gozuacik D Front Pharmacol. 2022; 13:866738.

PMID: 35401202 PMC: 8984161. DOI: 10.3389/fphar.2022.866738.


Serum Metabolic Profiling of Late-Pregnant Women With Antenatal Depressive Symptoms.

Mao Q, Tian T, Chen J, Guo X, Zhang X, Zou T Front Psychiatry. 2021; 12:679451.

PMID: 34305679 PMC: 8295540. DOI: 10.3389/fpsyt.2021.679451.


References
1.
Dirnagl U, Iadecola C, Moskowitz M . Pathobiology of ischaemic stroke: an integrated view. Trends Neurosci. 1999; 22(9):391-7. DOI: 10.1016/s0166-2236(99)01401-0. View

2.
Stern J, EGGLESTON L, HEMS R, KREBS H . Accumulation of glutamic acid in isolated brain tissue. Biochem J. 1949; 44(4):410-8. PMC: 1274882. View

3.
Koppaka S, Puchowicz , Lamanna J, Gatica J . Effect of alternate energy substrates on mammalian brain metabolism during ischemic events. Adv Exp Med Biol. 2008; 614:361-70. DOI: 10.1007/978-0-387-74911-2_40. View

4.
Goldberg M, Weiss J, Pham P, Choi D . N-methyl-D-aspartate receptors mediate hypoxic neuronal injury in cortical culture. J Pharmacol Exp Ther. 1987; 243(2):784-91. View

5.
Lee S, Su Z, Emdad L, Gupta P, Sarkar D, Borjabad A . Mechanism of ceftriaxone induction of excitatory amino acid transporter-2 expression and glutamate uptake in primary human astrocytes. J Biol Chem. 2008; 283(19):13116-23. PMC: 2442320. DOI: 10.1074/jbc.M707697200. View