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The formation of methylglyoxal from triose phosphates

European Journal of Biochemistry · 1993 · Vol. 212(1) · pp. 101–105
Susan A. PhillipsPaul J. Thornalley

Abstract

In Krebs-Ringer phosphate buffer, the rate of formation of methylglyoxal from glycerone phosphate and glyceraldehyde 3-phosphate was first order with respect to the triose phosphate with rates constant values of 1.94 +/- 0.02 x 10(-5) s-1 (n = 18) and 1.54 +/- 0.02 x 10(-4) s-1 (n = 18) at 37 degrees C, respectively. The rate of formation of methylglyoxal from glycerone phosphate and glyceraldehyde 3-phosphate in the presence of red blood cell lysate was not significantly different from the non-enzymatic value (P > 0.05). Methylglyoxal formation from glycerone phosphate was increased in the presence of triose phosphate isomerase but this may be due to the faster non-enzymatic formation from the glyceraldehyde 3-phosphate isomerisation product. For red blood cells in vitro, the predicted non-enzymatic rate of formation of methylglyoxal from glycerone phosphate and glyceraldehyde 3-phosphate may account for the metabolic flux through the glyoxalase system. The reactivity of glycerone phosphate and glyceraldehyde 3-phosphate towards the non-enzymatic formation of methylglyoxal under physiological conditions suggests that methylglyoxal formation is unavoidable from the Embden-Meyerhof pathway.

Advanced Glycation End Products researchPancreatic function and diabetesDiet, Metabolism, and DiseaseMethylglyoxalPhosphateChemistryGlyceraldehydeBiochemistryTriosephosphate isomeraseEnzymeLactoylglutathione lyase

MeSH terms

Dihydroxyacetone PhosphateErythrocytesGlyceraldehyde 3-PhosphateHumansPyruvaldehydeTriose-Phosphate IsomeraseIn Vitro Techniques
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The formation of methylglyoxal from triose phosphates · Scinovex