CARRIER-MEDIATED FRUCTOSE UPTAKE SIGNIFICANTLY CONTRIBUTES TO CARBOHYDRATE-METABOLISM IN HUMAN SKELETAL-MUSCLE

被引:35
作者
ZIERATH, JR
NOLTE, LA
WAHLSTROM, E
GALUSKA, D
SHEPHERD, PR
KAHN, BB
WALLBERGHENRIKSSON, H
机构
[1] UNIV CAMBRIDGE, DEPT CLIN BIOCHEM, CAMBRIDGE, ENGLAND
[2] HARVARD UNIV, BETH ISRAEL HOSP,SCH MED,DEPT MED, HARVARD THORNDIKE LAB, BOSTON, MA 02215 USA
[3] HARVARD UNIV, SCH MED, CHARLES A DANA RES INST, BOSTON, MA 02215 USA
关键词
D O I
10.1042/bj3110517
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To determine whether fructose can be utilized as a metabolic substrate for skeletal muscle in man, we investigated its incorporation into glycogen, its oxidation and lactate production in isolated human skeletal muscle. Rates of fructose oxidation and incorporation into glycogen increased in the presence of increasing fructose concentrations (0.1-1.0 mM). Lactate production increased 3-fold when extracellular fructose was increased from 0.1 to 0.5 mM. Cytochalasin B, a competitive inhibitor of hexose transport mediated by the GLUT1 and GLUT4 facilitative glucose transporters, completely inhibited insulin-stimulated glucose incorporation into glycogen and glucose oxidation (P < 0.01), but did not alter fructose incorporation into glycogen or fructose oxidation. Insulin (1000 mu-units/ml) increased glucose incorporation into glycogen 2.7-fold and glucose oxidation 2.3-fold, whereas no effect on fructose incorporation into glycogen or fructose oxidation was noted. A physiological concentration of glucose (5 mM) decreased the rate of 0.5 mM fructose incorporation into glycogen by 60% (P < 0.001), whereas fructose oxidation was not altered in the presence of 5 mM glucose. Irrespective of fructose concentration, the majority of fructose taken up underwent non-oxidative metabolism. Lactate production accounted for approx. 80% of the fructose metabolism in the basal state and approx. 70% in the insulin (1000 mu-units/ml)-stimulated state. In the presence of 5 mM glucose, physiological concentrations of fructose could account for similar to 10-30% of hexose (glucose+fructose) incorporation into glycogen under non-insulin-stimulated conditions. In conclusion, fructose appears to be transported into human skeletal muscle via a carrier-mediated system that does not involve GLUT4 or GLUT1. Furthermore, under physiological conditions, fructose can significantly contribute to carbohydrate metabolism in human skeletal muscle.
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页码:517 / 521
页数:5
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