Pyruvate dehydrogenase complex: Metabolic link to ischemic brain injury and target of oxidative stress
- 23 November 2004
- journal article
- review article
- Published by Wiley in Journal of Neuroscience Research
- Vol. 79 (1-2) , 240-247
- https://doi.org/10.1002/jnr.20293
Abstract
The mammalian pyruvate dehydrogenase complex (PDHC) is a mitochondrial matrix enzyme complex (greater than 7 million Daltons) that catalyzes the oxidative decarboxylation of pyruvate to form acetyl CoA, nicotinamide adenine dinucleotide (the reduced form, NADH), and CO2. This reaction constitutes the bridge between anaerobic and aerobic cerebral energy metabolism. PDHC enzyme activity and immunoreactivity are lost in selectively vulnerable neurons after cerebral ischemia and reperfusion. Evidence from experiments carried out in vitro suggests that reperfusion‐dependent loss of activity is caused by oxidative protein modifications. Impaired enzyme activity may explain the reduced cerebral glucose and oxygen consumption that occurs after cerebral ischemia. This hypothesis is supported by the hyperoxidation of mitochondrial electron transport chain components and NAD(H) that occurs during reperfusion, indicating that NADH production, rather than utilization, is rate limiting. Additional support comes from the findings that immediate postischemic administration of acetyl‐L‐carnitine both reduces brain lactate/pyruvate ratios and improves neurologic outcome after cardiac arrest in animals. As acetyl‐L‐carnitine is converted to acetyl CoA, the product of the PDHC reaction, it follows that impaired production of NADH is due to reduced activity of either PDHC or one or more steps in glycolysis. Impaired cerebral energy metabolism and PDHC activity are associated also with neurodegenerative disorders including Alzheimer's disease and Wernicke‐Korsakoff syndrome, suggesting that this enzyme is an important link in the pathophysiology of both acute brain injury and chronic neurodegeneration.Keywords
This publication has 72 references indexed in Scilit:
- Effect of γ-hydroxybutyrate in two rat models of focal cerebral damageBrain Research, 2003
- Hyperbaric Oxygen Reduces Neuronal Death and Improves Neurological Outcome After Canine Cardiac ArrestStroke, 2003
- Normoxic Ventilation After Cardiac Arrest Reduces Oxidation of Brain Lipids and Improves Neurological OutcomeStroke, 1998
- Glutamate, Glutamine, and GABA as Substrates for the Neuronal and Glial Compartments After Focal Cerebral Ischemia in RatsStroke, 1998
- Calcium, energy metabolism and the development of selective neuronal loss following short-term cerebral ischemiaMetabolic Brain Disease, 1995
- Inhibition of postcardiac arrest brain protein oxidation by acetyl-l-carnitineFree Radical Biology & Medicine, 1993
- Prevention of postischemic canine neurological injury through potentiation of brain energy metabolism by acetyl-L-carnitine.Stroke, 1992
- Breathing 100% oxygen after global brain ischemia in Mongolian Gerbils results in increased lipid peroxidation and increased mortality.Stroke, 1987
- Postinsult treatment of ischemia-induced cerebral lactic acidosis in the ratAnnals of Emergency Medicine, 1986
- Butanediol induced cerebral protection from ischemic-hypoxia in the instrumented Levine rat.Stroke, 1984