Expression of monocarboxylate transporter mRNAs in mouse brain: Support for a distinct role of lactate as an energy substrate for the neonatal vs. adult brain
Open Access
- 31 March 1998
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 95 (7) , 3990-3995
- https://doi.org/10.1073/pnas.95.7.3990
Abstract
Under particular circumstances like lactation and fasting, the blood-borne monocarboxylates acetoacetate, β-hydroxybutyrate, and lactate represent significant energy substrates for the brain. Their utilization is dependent on a transport system present on both endothelial cells forming the blood-brain barrier and on intraparenchymal brain cells. Recently, two monocarboxylate transporters, MCT1 and MCT2, have been cloned. We report here the characterization by Northern blot analysis and by in situ hybridization of the expression of MCT1 and MCT2 mRNAs in the mouse brain. In adults, both transporter mRNAs are highly expressed in the cortex, the hippocampus and the cerebellum. During development, a peak in the expression of both transporters occurs around postnatal day 15, declining rapidly by 30 days at levels observed in adults. Double-labeling experiments reveal that the expression of MCT1 mRNA in endothelial cells is highest at postnatal day 15 and is not detectable at adult stages. These results support the notion that monocarboxylates are important energy substrates for the brain at early postnatal stages and are consistent with the sharp decrease in blood-borne monocarboxylate utilization after weaning. In addition, the observation of a sustained intraparenchymal expression of monocarboxylate transporter mRNAs in adults, in face of the seemingly complete disappearance of their expression on endothelial cells, reinforces the view that an intercellular exchange of lactate occurs within the adult brain.Keywords
This publication has 45 references indexed in Scilit:
- Identification of a Unique Monocarboxylate Transporter (MCT3) in Retinal Pigment EpitheliumBiochemical and Biophysical Research Communications, 1997
- Selective Distribution of Lactate Dehydrogenase Isoenzymes in Neurons and Astrocytes of Human BrainJournal of Cerebral Blood Flow & Metabolism, 1996
- Cellular Bases of Brain Energy Metabolism and Their Relevance to Functional Brain Imaging: Evidence for a Prominent Role of AstrocytesCerebral Cortex, 1996
- Developmental Expression and Molecular Cloning of REMP, a Novel Retinal Epithelial Membrane ProteinExperimental Cell Research, 1995
- The human blood‐brain barrier glucose transporter (GLUT1) is a glucose transporter of gray matter astrocytesGlia, 1995
- Lactate Metabolism and Its Effects on Glucose Metabolism in an Excised Neural TissueJournal of Neurochemistry, 1995
- Lactate-Supported Synaptic Function in the Rat Hippocampal Slice PreparationScience, 1988
- Lactate production and release in cultured astrocytesNeuroscience Letters, 1988
- Inhibition, by 2‐Oxo Acids That Accumulate in Maple‐Syrup‐Urine Disease, of Lactate, Pyruvate, and 3‐Hydroxybutyrate Transport Across the Blood‐Brain BarrierJournal of Neurochemistry, 1982
- SUBSTANCES WHICH SUPPORT RESPIRATION AND METABOLIC RESPONSE TO ELECTRICAL IMPULSES IN HUMAN CEREBRAL TISSUESJournal of Neurology, Neurosurgery & Psychiatry, 1953