Overexpression of the high affinity choline transporter in cortical regions affected by Alzheimer's disease. Evidence from rapid autopsy studies.
Open Access
- 1 August 1994
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 94 (2) , 696-702
- https://doi.org/10.1172/jci117387
Abstract
Cholinergic deficits in Alzheimer's disease are typically assessed by choline acetyltransferase, the enzyme that synthesizes acetylcholine. However, the determining step in acetylcholine formation is choline uptake via a high affinity transporter in nerve terminal membranes. Evaluating uptake is difficult because regulatory changes in transporter function decay rapidly postmortem. To overcome this problem, brain regions from patients with or without Alzheimer's disease were frozen within 4 h of death and examined for both choline acetyltransferase activity and for binding of [3H]-hemicholinium-3 to the choline transporter. Consistent with the loss of cholinergic projections, cerebral cortical areas exhibited marked decreases in enzyme activity whereas the putamen, a region not involved in Alzheimer's disease, was unaffected. However, [3H]hemicholinium-3 binding was significantly enhanced in the cortical regions. In the frontal cortex, the increase in [3H]hemicholinium-3 binding far exceeded the loss of choline acetyltransferase, indicating transporter overexpression beyond that necessary to offset loss of synaptic terminals. These results suggest that, in Alzheimer's disease, the loss of cholinergic function is not dictated simply by destruction of nerve terminals, but rather involves additional alterations in choline utilization; interventions aimed at increasing the activity of cholinergic neurons may thus accelerate neurodegeneration.Keywords
This publication has 26 references indexed in Scilit:
- Biochemical pathology and treatment strategies in Alzheimer's disease: Emphasis on the cholinergic systemActa Neurologica Scandinavica, 1993
- Differential development of cholinergic nerve terminal markers in rat brain regions: implications for nerve terminal density, impulse activity and specific gene expressionBrain Research, 1993
- Deficits in development of central cholinergic pathways caused by fetal nicotine exposure: Differential effects on choline acetyltransferase activity and [3H]hemicholinium-3 bindingNeurotoxicology and Teratology, 1992
- Biological markers and the cholinergic hypothesis in Alzheimer's diseaseActa Neurologica Scandinavica, 1992
- Choline metabolism as a basis for the selective vulnerability of cholinergic neuronsTrends in Neurosciences, 1992
- Sodium-dependent high-affinity binding of [3H] hemicholinium-3 in the rat brain: A potentially selective marker for presynaptic cholinergic sitesLife Sciences, 1984
- DIETARY CHOLINE: BIOCHEMISTRY, PHYSIOLOGY, AND PHARMACOLOGYAnnual Review of Nutrition, 1981
- High-Affinity Transport of Choline in Neuronal TissuePharmacology, 1980
- High affinity choline transport and acetylCoA production in brain and their roles in the regulation of acetylcholine synthesisBrain Research Reviews, 1979
- SODIUM‐DEPENDENT HIGH AFFINITY CHOLINE UPTAKE: A REGULATORY STEP IN THE SYNTHESIS OF ACETYLCHOLINEJournal of Neurochemistry, 1976