Fluid Brain Glycolysis: Limits, Speed, Location, Moonlighting, and the Fates of Glycogen and Lactate

Barros, L. Felipe; San Martin, Alejandro; Ruminot, Ivan; Sandoval, Pamela Y.; Baeza-Lehnert, Felipe; Arce-Molina, Robinson; Rauseo, Daniela; Contreras-Baeza, Yasna; Galaz, Alex; Valdivia, Sharin.

Abstract

Glycolysis is the core of intermediate metabolism, an ancient pathway discovered in the heydays of classic biochemistry. A hundred years later, it remains a matter of active research, clinical interest and is not devoid of controversy. This review examines topical aspects of glycolysis in the brain, a tissue characterized by an extreme dependence on glucose. The limits of glycolysis are reviewed in terms of flux control by glucose transporters, intercellular lactate shuttling and activity-dependent glycolysis in astrocytes and neurons. What is the site of glycogen mobilization and aerobic glycolysis in brain tissue? We scrutinize the pervasive notions that glycolysis is fast and that catalysis is channeled through supramolecular assemblies. In brain tissue, most glycolytic enzymes are catalytically silent. What then is their function?

Más información

Título según WOS: Fluid Brain Glycolysis: Limits, Speed, Location, Moonlighting, and the Fates of Glycogen and Lactate
Título según SCOPUS: Fluid Brain Glycolysis: Limits, Speed, Location, Moonlighting, and the Fates of Glycogen and Lactate
Título de la Revista: NEUROCHEMICAL RESEARCH
Volumen: 45
Número: 6
Editorial: SPRINGER/PLENUM PUBLISHERS
Fecha de publicación: 2020
Idioma: English
DOI:

10.1007/S11064-020-03005-2

Notas: ISI, SCOPUS