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PMID: 8492127 Published · ppublish English Journal Article

Synthesis of deoxyglucose-1-phosphate, deoxyglucose-1,6-bisphosphate, and other metabolites of 2-deoxy-D-[14C]glucose in rat brain in vivo: influence of time and tissue glucose level.

Journal of neurochemistry ·Vol. 60 ·No. 6 ·1993-06-00 ·Pages 2217-31

Dienel GA, Cruz NF

Abstract

When the kinetics of interconversion of deoxy[14C]glucose ([14C]DG) and [14C]DG-6-phosphate ([14C]DG-6-P) in brain in vivo are estimated by direct chemical measurement of precursor and products in acid extracts of brain, the predicted rate of product formation exceeds the experimentally measured rate. This discrepancy is due, in part, to the fact that acid extraction regenerates [14C]DG from unidentified labeled metabolites in vitro. In the present study, we have attempted to identify the 14C-labeled compounds in ethanol extracts of brains of rats given [14C]DG. Six 14C-labeled metabolites, in addition to [14C]DG-6-P, were detected and separated. The major acid-labile derivatives, DG-1-phosphate (DG-1-P) and DG-1,6-bisphosphate (DG-1,6-P2), comprised approximately 5 and approximately 10-15%, respectively, of the total 14C in the brain 45 min after a pulse or square-wave infusion of [14C]DG, and their levels were influenced by tissue glucose concentration. Both of these acid-labile compounds could be synthesized from DG-6-P by phosphoglucomutase in vitro. DG-6-P, DG-1-P, DG-1,6-P2, and ethanol-insoluble compounds were rapidly labeled after a pulse of [14C]DG, whereas there was a 10-30-min lag before there was significant labeling of minor labeled derivatives. During the time when there was net loss of [14C]DG-6-P from the brain (i.e., between 60 and 180 min after the pulse), there was also further metabolism of [14C]DG-6-P into other ethanol-soluble and ethanol-insoluble 14C-labeled compounds. These results demonstrate that DG is more extensively metabolized in rat brain than commonly recognized and that hydrolysis of [14C]DG-1-P can explain the overestimation of the [14C]DG content and underestimation of the metabolite pools of acid extracts of brain. Further metabolism of DG does not interfere with the autoradiographic DG method.

MeSH Terms
Animals Brain/metabolism Carbon Radioisotopes Chromatography, High Pressure Liquid Deoxyglucose/metabolism Glucose/metabolism Glucose-6-Phosphate/analogs & derivatives Glucosephosphates/isolation & purification,metabolism Hydrolysis Kinetics Male Phosphoglucomutase/metabolism Radioisotope Dilution Technique Rats Rats, Sprague-Dawley
Chemicals
Carbon Radioisotopes Glucosephosphates 2-deoxyglucose-1,6-bisphosphate 2-deoxyglucose-1-phosphate Glucose-6-Phosphate Deoxyglucose Phosphoglucomutase Glucose
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Dienel G A
Laboratory of Cerebral Metabolism, National Institute of Mental Health, Bethesda, MD 20892.
Cruz N F
Article Info
Journal
Journal of neurochemistry
Abbr.
J Neurochem
ISSN
0022-3042
Published
1993-06-00
Pages
2217-31
Language
English
Region
England
NLM ID
2985190R
Subset
IM
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