Down-regulation of adipose tissue lipoprotein lipase during fasting requires that a gene, separate from the lipase gene, is switched on

被引:67
作者
Bergö, M [1 ]
Wu, GS [1 ]
Ruge, T [1 ]
Olivecrona, T [1 ]
机构
[1] Umea Univ, Dept Med Biosci, S-90187 Umea, Sweden
关键词
D O I
10.1074/jbc.M200325200
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
During short term fasting, lipoprotein lipase (LPL) activity in rat adipose tissue is rapidly down-regulated. This down-regulation occurs on a posttranslational level; it is not accompanied by changes in LPL mRNA or protein levels. The LPL activity can be restored within 4 h by refeeding. Previously, we showed that during fasting there is a shift in the distribution of lipase protein toward an inactive form with low heparin affinity. To study the nature of the regulatory mechanism, we determined the in vivo turnover of LPL activity, protein mass, and mRNA in rat adipose tissue. When protein synthesis was inhibited with cycloheximide, LPL activity and protein mass decreased rapidly and in parallel with half-lives of around 2 h, and the effect of refeeding was blocked. This indicates that maintaining high levels of LPL activity requires continuous synthesis of new enzyme protein. When transcription was inhibited by actinomycin, LPL mRNA decreased with half-lives of 13.3 and 16.8 h in the fed and fasted states, respectively, demonstrating slow turnover of the LPL transcript. Surprisingly, when actinomycin was given to fed rats, LPL activity was not down-regulated during fasting, indicating that actinomycin interferes with the transcription of a gene that blocks the activation of newly synthesized LPL protein. When actinomycin was given to fasted rats, LPL activity increased 4-fold within 6 h, even in the absence of refeeding. The same effect was seen with a-amanitin, another inhibitor of transcription. The response to actinomycin was much less pronounced in aging rats, which are obese and insulin-resistant. These data suggest a default state where LPL protein is synthesized on a relatively stable mRNA and is processed into its active form. During fasting, a gene is switched on whose product prevents the enzyme from becoming active even though synthesis of LPL protein continues unabated.
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页码:11927 / 11932
页数:6
相关论文
共 32 条
[1]   TRANSCRIPTIONAL ACTIVATION OF THE LIPOPROTEIN-LIPASE AND APOLIPOPROTEIN-E GENES ACCOMPANIES DIFFERENTIATION IN SOME HUMAN MACROPHAGE-LIKE CELL-LINES [J].
AUWERX, JH ;
DEEB, S ;
BRUNZELL, JD ;
PENG, RL ;
CHAIT, A .
BIOCHEMISTRY, 1988, 27 (08) :2651-2655
[2]  
BENZEEV O, 1992, J BIOL CHEM, V267, P6219
[3]   Regulation of adipose tissue lipoprotein lipase in young and old rats [J].
Bergo, M ;
Olivecrona, G ;
Olivecrona, T .
INTERNATIONAL JOURNAL OF OBESITY, 1997, 21 (11) :980-986
[4]   Diurnal rhythms and effects of fasting and refeeding on rat adipose tissue lipoprotein lipase [J].
Bergo, M ;
Olivecrona, G ;
Olivecrona, T .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 1996, 271 (06) :E1092-E1097
[5]   Forms of lipoprotein lipase in rat tissues: In adipose tissue the proportion of inactive lipase increases on fasting [J].
Bergo, M ;
Olivecrona, G ;
Olivecrona, T .
BIOCHEMICAL JOURNAL, 1996, 313 :893-898
[6]   WEIGHT-REDUCTION INCREASES ADIPOSE BUT DECREASES CARDIAC LPL IN REDUCED-OBESE ZUCKER RATS [J].
BESSESEN, DH ;
ROBERTSON, AD ;
ECKEL, RH .
AMERICAN JOURNAL OF PHYSIOLOGY, 1991, 261 (02) :E246-E251
[7]   REGULATION OF THE SYNTHESIS, PROCESSING AND TRANSLOCATION OF LIPOPROTEIN-LIPASE [J].
BRAUN, JEA ;
SEVERSON, DL .
BIOCHEMICAL JOURNAL, 1992, 287 :337-347
[8]  
Briquet-Laugier V, 1999, J LIPID RES, V40, P2044
[9]   COLD-INDUCED BETA-ADRENERGIC RECRUITMENT OF LIPOPROTEIN-LIPASE IN BROWN FAT IS DUE TO INCREASED TRANSCRIPTION [J].
CARNEHEIM, C ;
NEDERGAARD, J ;
CANNON, B .
AMERICAN JOURNAL OF PHYSIOLOGY, 1988, 254 (02) :E155-E161
[10]   FATE OF LIPOPROTEIN-LIPASE TAKEN UP BY THE RAT-LIVER - EVIDENCE FOR A CONFORMATIONAL CHANGE WITH LOSS OF CATALYTIC ACTIVITY [J].
CHAJEKSHAUL, T ;
FRIEDMAN, G ;
ZIV, E ;
BARON, H ;
BENGTSSONOLIVERCRONA, G .
BIOCHIMICA ET BIOPHYSICA ACTA, 1988, 963 (02) :183-191