DIFFERENTIAL-EFFECTS OF PERTUSSIS TOXIN ON INSULIN-STIMULATED PHOSPHATIDYLCHOLINE HYDROLYSIS AND GLYCEROLIPID SYNTHESIS DENOVO - STUDIES IN BC3H-1 MYOCYTES AND RAT ADIPOCYTES

被引:28
作者
HOFFMAN, JM
STANDAERT, ML
NAIR, GP
FARESE, RV
机构
[1] JAMES A HALEY VET HOSP,ACOS RES & DEV,DEPT INTERNAL MED,VAR 151,13000 BRUCE B DOWNS BLVD,TAMPA,FL 33612
[2] UNIV S FLORIDA,DEPT BIOCHEM MOLEC BIOL,TAMPA,FL 33612
关键词
D O I
10.1021/bi00227a021
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
Insulin-induced increases in diacylglycerol (DAG) have been suggested to result from stimulation of de novo phosphatidic acid (PA) synthesis and phosphatidylcholine (PC) hydrolysis. Presently, we found that insulin decreased PC levels of BC3H-1 myocytes and rat adipocytes by approximately 10-25% within 30 s. These decreases were rapidly reversed in both cell types, apparently because of increased PC synthesis de novo. In BC3H-1 myocytes, pertussis toxin inhibited PC resynthesis and insulin effects on the pathway of de novo PA-DAG-PC synthesis, as evidenced by changes in [H-3]glycerol incorporation, but did not inhibit insulin-stimulated PC hydrolysis. Pertussis toxin also blocked the later, but not the initial, increase in DAG production in the myocytes. Phorbol esters activated PC hydrolysis in both myocytes and adipocytes, but insulin-induced stimulation of PC hydrolysis was not dependent upon activation of PKC, since this hydrolysis was not inhibited by 500-mu-M sangivamycin, an effective PKC inhibitor. Our results indicate that insulin increases DAG by pertussis toxin sensitive (PA synthesis de novo) and insensitive (PC hydrolysis) mechanisms, which are mechanistically separate, but functionally interdependent and integrated. PC hydrolysis may contribute importantly to initial increases in DAG, but later sustained increases are apparently largely dependent on insulin-induced stimulation of the pathway of de novo phospholipid synthesis.
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页码:3315 / 3322
页数:8
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