Evidence That Processes Other Than Gluconeogenesis May Influence the Ratio of Deuterium on the Fifth and Third Carbons of Glucose
Implications for the Use of 2H2O to Measure Gluconeogenesis in Humans
- Gerlies Bock1,
- William C. Schumann2,
- Rita Basu1,
- Shawn C. Burgess3,
- Zheng Yan3,
- Visvanathan Chandramouli2,
- Robert A. Rizza1 and
- Bernard R. Landau2†
- 1Division of Endocrinology, Diabetes, Metabolism, and Nutrition, Department of Medicine, Mayo Clinic College of Medicine, Rochester, Minnesota
- 2The Advanced Imaging Research Center, Case Western Reserve University School of Medicine, Cleveland, Ohio
- 3the University of Texas Southwestern Medical Center, Dallas, Texas
- Address correspondence and reprint requests to Robert A. Rizza, MD, Mayo Clinic, 200 1st St. SW, Rm. 5-194 Joseph, Rochester, MN 55905. E-mail: rizza.robert{at}mayo.edu
Abstract
OBJECTIVE—The deuterated water method uses the ratio of deuterium on carbons 5 and 2 (C5/C2) or 3 and 2 (C3/C2) to estimate the fraction of glucose derived from gluconeogenesis. The current studies determined whether C3 and C5 glucose enrichment is influenced by processes other than gluconeogenesis.
RESEARCH DESIGN AND METHODS—Six nondiabetic subjects were infused with [3,5-2H2]glucose and insulin while glucose was clamped at ∼5 mmol/l; the C5-to-C3 ratio was measured in the in UDP-glucose pool using nuclear magnetic resonance and the acetaminophen glucuronide method.
RESULTS—Whereas the C5-to-C3 ratio of the infusate was 1.07, the ratio in UDP-glucose was <1.0 in all subjects both before (0.75 ± 0.07) and during (0.67 ± 0.05) the insulin infusion.
CONCLUSIONS—These data indicate that the deuterium on C5 of glucose is lost more rapidly relative to the deuterium on C3. The decrease in the C5-to-C3 ratio could result from exchange of the lower three carbons of fructose-6-phosphate with unlabeled three-carbon precursors via the transaldolase reaction and/or selective retention of the C3 deuterium at the level of triosephosphate isomerase due to a kinetic isotope effect. After ingestion of 2H2O, these processes would increase the enrichment of C5 and decrease the enrichment of C3, respectively, with the former causing an overestimation of gluconeogenesis using the C2-to-C5 ratio and the latter an underestimation using the C3-to-C2 ratio. Future studies will be required to determine whether the impact of these processes on the measurement of gluconeogenesis differs among the disease states being evaluated (e.g., diabetes or obesity).
- DHAP, dihydroxyacetone phosphate
- G3P, glyceraldhyde-3 phosphate
- MAG, monoacetoneglucose
- NMR, nuclear magnetic resonance
- THF, tetrahydrofuran
Footnotes
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Published ahead of print at http://diabetes.diabetesjournals.org on 12 October 2007. DOI: 10.2337/db07-0694.
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† B.R.L. is deceased.
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The costs of publication of this article were defrayed in part by the payment of page charges. This article must therefore be hereby marked “advertisement” in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.
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- Accepted October 1, 2007.
- Received May 22, 2007.
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