DEMONSTRATION OF A GLYCOGEN/GLUCOSE 1-PHOSPHATE CYCLE IN HEPATOCYTES FROM FASTED RATS - SELECTIVE INACTIVATION OF PHOSPHORYLASE BY 2-DEOXY-2-FLUORO-ALPHA-D-GLUCOPYRANOSYL FLUORIDE

被引:60
作者
MASSILLON, D
BOLLEN, M
DEWULF, H
OVERLOOP, K
VANSTAPEL, F
VANHECKE, P
STALMANS, W
机构
[1] CATHOLIC UNIV LEUVEN,FAK GENEESKUNDE,AFDELING BIOCHEM,B-3000 LOUVAIN,BELGIUM
[2] CATHOLIC UNIV LEUVEN,FAK GENEESKUNDE,BIOMED NMR EENHEID,B-3000 LOUVAIN,BELGIUM
关键词
D O I
10.1074/jbc.270.33.19351
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
In search for a nonmetabolized, superior glucose analogue to study the mechanism of glucose-induced glycogen synthesis, we have tested 2-deoxy-2-fluoro-alpha-D-glucopyranosyl fluoride, which inhibits muscle phosphorylase b 10 fold better than does glucose (Street, I. P., Armstrong, C. R., and Withers, S. G. (1986) Biochemistry 25, 6021-6027), In a gel-filtered liver extract, 0.6 mM analogue and 10 mM glucose equally accelerated the inactivation of phosphorylase and shortened the latency before the activation of glycogen synthase, The analogue was not measurably defluorinated or phosphorylated by intact hepatocytes, as monitored by F-19 NMR. When added to isolated hepatocytes, 10 mM analogue inactivated phosphorylase more extensively than did 50 mM glucose, but unlike glucose, it did not result in the activation of glycogen synthase, Therefore, the binding of glucose to phosphorylase a can account for the inactivation of phosphorylase, but the metabolism of glucose (probably to Glc-6-P) appears to be required to achieve activation of glycogen synthase. The livers of overnight-fasted, anesthetized mice contained appreciable amounts of both phosphorylase a and glycogen synthase a, without net glycogen accumulation, Likewise, hepatocytes isolated from fasted rats and incubated with 10 mM glucose contained 41% of phosphorylase and 32% of glycogen synthase in the a form, and these values remained stable for 1 h, while glycogen accumulated at only 22% of the rate expected from the glycogen synthase activity, The addition of 10 mM analogue decreased phosphorylase a to 10% without significant change in glycogen synthase a (38%), but with a 4-fold increased rate of glycogen accumulation. These findings imply that synthase a is fully active in the liver of the fasted animal and that the absence of net glycogen synthesis is due to continuous glycogenolysis by phosphorylase a.
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页码:19351 / 19356
页数:6
相关论文
共 40 条
[21]   THE INHIBITORY EFFECT OF PHOSPHORYLASE A ON THE ACTIVATION OF GLYCOGEN-SYNTHASE DEPENDS ON THE TYPE OF SYNTHASE PHOSPHATASE [J].
MVUMBI, L ;
DOPERE, F ;
STALMANS, W .
BIOCHEMICAL JOURNAL, 1983, 212 (02) :407-416
[22]   HIGH-AFFINITY BINDING OF GLYCOGEN-SYNTHASE PHOSPHATASE TO GLYCOGEN PARTICLES IN THE LIVER - ROLE OF GLYCOGEN IN THE INHIBITION OF SYNTHASE PHOSPHATASE BY PHOSPHORYLASE-A [J].
MVUMBI, L ;
STALMANS, W .
BIOCHEMICAL JOURNAL, 1987, 246 (02) :367-374
[23]  
NAKADA T, 1985, BIOCHEM ARCH, V1, P163
[24]   SEQUENTIAL INACTIVATION OF GLYCOGEN-PHOSPHORYLASE AND ACTIVATION OF GLYCOGEN-SYNTHETASE IN LIVER AFTER ADMINISTRATION OF GLUCOSE TO MICE AND RATS - MECHANISM OF HEPATIC THRESHOLD TO GLUCOSE [J].
STALMANS, W ;
DEWULF, H ;
HUE, L ;
HERS, HG .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1974, 41 (01) :127-134
[25]   INTERACTION OF LIVER PHOSPHORYLASE-A WITH GLUCOSE AND AMP [J].
STALMANS, W ;
LALOUX, M ;
HERS, HG .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1974, 49 (02) :415-427
[26]  
STALMANS W, 1987, Diabetes Metabolism Reviews, V3, P127
[27]  
STALMANS W, 1976, CURR TOP CELL REGUL, V11, P51
[28]   HYDROGEN-BONDING AND SPECIFICITY - FLUORODEOXY SUGARS AS PROBES OF HYDROGEN-BONDING IN THE GLYCOGEN-PHOSPHORYLASE GLUCOSE COMPLEX [J].
STREET, IP ;
ARMSTRONG, CR ;
WITHERS, SG .
BIOCHEMISTRY, 1986, 25 (20) :6021-6027
[29]  
TAN AWH, 1982, J BIOL CHEM, V257, P5004
[30]   AN ASSESSMENT OF THE IMPORTANCE OF INTRALYSOSOMAL AND OF ALPHA-AMYLOLYTIC GLYCOGENOLYSIS IN THE LIVER OF NORMAL RATS AND OF RATS WITH A GLYCOGEN-STORAGE-DISEASE [J].
VANDEBROECK, A ;
BOLLEN, M ;
DEWULF, H ;
STALMANS, W .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1985, 153 (03) :621-628