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Título

Twenty-seven years of cerebral pyruvate recycling

AutorCerdán, Sebastián CSIC ORCID
Palabras clavePyruvate recycling
Malic enzyme
13C NMR
13C isotopomer analysis
13C isotopes
Fecha de publicación2017
EditorSpringer Nature
CitaciónNeurochemical Research 42(6): 1621-1628 (2017)
ResumenCerebral pyruvate recycling is a metabolic pathway deriving carbon skeletons and reducing equivalents from mitochondrial oxaloacetate and malate, to the synthesis of mitochondrial and cytosolic pyruvate, lactate and alanine. The pathway allows both, to provide the tricarboxylic acid cycle with pyruvate molecules produced from alternative substrates to glucose and, to generate reducing equivalents necessary for the operation of NADPH requiring processes. At the cellular level, pyruvate recycling involves the activity of malic enzyme, or the combined activities of phosphoenolpyruvate carboxykinase and pyruvate kinase, as well as of those transporters of the inner mitochondrial membrane exchanging the corresponding intermediates. Its cellular localization between the neuronal or astrocytic compartments of the in vivo brain has been controversial, with evidences favoring either a primarily neuronal or glial localizations, more recently accepted to occur in both environments. This review provides a brief history on the detection and characterization of the pathway, its relations with the early developments of cerebral high resolution 13C NMR, and its potential neuroprotective functions under hypoglycemic conditions or ischemic redox stress.
Versión del editorhttps://doi.org/10.1007/s11064-017-2173-4
URIhttp://hdl.handle.net/10261/187984
DOI10.1007/s11064-017-2173-4
ISSN0364-3190
E-ISSN1573-6903
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