EFFECTS OF INSULIN ON OVINE FETAL LEUCINE KINETICS AND PROTEIN-METABOLISM

被引:33
作者
MILLEY, JR
机构
[1] Division of Neonatology, Department of Pediatrics, Univ. of Utah School of Medicine, Salt Lake City
[2] Division of Neonatology, Department of Pediatrics, Univ. of Utah School of Medicine, Salt Lake City, UT 84132
关键词
FETUS; FETAL GROWTH; PROTEIN BREAKDOWN; PROTEIN SYNTHESIS; INSULIN;
D O I
10.1172/JCI117142
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Fetuses of eight pregnant ewes (114-117 d of gestation) were used to study whether fetal insulin concentration affects fetal protein accretion and, if so, whether such changes are caused by effects on protein synthesis or protein breakdown. Fetal leucine kinetics were measured by infusion of [1-C-14]leucine during each of three protocols: (I) low vs. normal insulin concentration; (II) low vs. high insulin concentration; and (III) low vs. high insulin concentration during amino acid infusion to keep leucine concentration constant. Fetal leucine concentration (233+/-20 vs. 195+/-18 mu M) and clearance (48.3+/-4.4 vs. 54.2+/-5.5 ml/kg per min) were the only aspects of fetal leucine kinetics that changed during protocol I. During protocol II, insulin infusion decreased fetal leucine concentration (222+/-22 vs. 175+/-22), decreased fetal leucine disposal(11.63+/-0.89 vs. 12.55+/-0.89 mu mol/kg per min), increased leucine clearance (48.0+/-4.2 vs. 57.6+/-6.5 ml/kg per min), decreased leucine decarboxylation (1.77+/-0.17 vs. 2.04+/-0.21 mu mol/kg per min), decreased nonoxidative leucine disposal (9.81+/-0.78 vs. 10.51+/-0.74 mu mol/kg per min), decreased release of leucine from fetal protein (743+/-1.08 vs. 8.38+/-0.83 mu mol/kg per min), but did not change the accretion of leucine into protein. In contrast, when leucine concentrations (205+/-25 vs. 189+/-23) were maintained (protocol III), insulin infusion did not change fetal leucine disposal, decarboxylation, or nonoxidative disposal although leucine clearance still rose (55.4+/-5.0 vs. 64.4+/-5.9 ml/kg/min). Fetal release of leucine from protein, however, decreased (7.46+/-0.83 vs. 8.57+/-0.71 mu mol/kg per min) and the accretion of leucine into protein increased (3.27+/-0.30 vs. 1.80+/-0.32 mu mol/kg/min). These findings show that insulin decreases fetal protein breakdown. If insulin-induced hypoaminoacidemia occurs, protein synthesis decreases so that no net accretion of protein occurs. If fetal amino acid concentrations are maintained, however, insulin itself does not affect protein synthesis, and fetal protein accretion increases.
引用
收藏
页码:1616 / 1624
页数:9
相关论文
共 42 条
[1]   LEUCINE AND ISOLEUCINE ACTIVATE SKELETAL-MUSCLE BRANCHED-CHAIN ALPHA-KETO ACID DEHYDROGENASE INVIVO [J].
AFTRING, RP ;
BLOCK, KP ;
BUSE, MG .
AMERICAN JOURNAL OF PHYSIOLOGY, 1986, 250 (05) :E599-E604
[2]   INTRINSICALLY DIFFICULT PROBLEMS - THE KINETICS OF BODY PROTEINS AND AMINO-ACIDS IN MAN [J].
BIER, DM .
DIABETES-METABOLISM REVIEWS, 1989, 5 (02) :111-132
[3]   ROLE OF GLUCAGON IN DISPOSAL OF AN AMINO-ACID LOAD [J].
BODEN, G ;
TAPPY, L ;
JADALI, F ;
HOELDTKE, RD ;
REZVANI, I ;
OWEN, OE .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (02) :E225-E232
[4]  
BROWN LL, 1980, J CHROMATOGR, V426, P370
[5]   EFFECT OF INSULIN AND PLASMA AMINO-ACID-CONCENTRATIONS ON LEUCINE METABOLISM IN MAN - ROLE OF SUBSTRATE AVAILABILITY ON ESTIMATES OF WHOLE-BODY PROTEIN-SYNTHESIS [J].
CASTELLINO, P ;
LUZI, L ;
SIMONSON, DC ;
HAYMOND, M ;
DEFRONZO, RA .
JOURNAL OF CLINICAL INVESTIGATION, 1987, 80 (06) :1784-1793
[6]  
DEFRONZO RA, 1979, AM J PHYSIOL, V237, pE214
[7]   PROTEOLYSIS IN SKELETAL-MUSCLE AND WHOLE-BODY IN RESPONSE TO EUGLYCEMIC HYPERINSULINEMIA IN NORMAL ADULTS [J].
DENNE, SC ;
LIECHTY, EA ;
LIU, YM ;
BRECHTEL, G ;
BARON, AD .
AMERICAN JOURNAL OF PHYSIOLOGY, 1991, 261 (06) :E809-E814
[8]   HORMONE ONTOGENY IN THE OVINE FETUS AND NEONATE .22. THE EFFECT OF SOMATOSTATIN ON THE GROWTH-HORMONE (GH) RESPONSE TO GH-RELEASING FACTOR [J].
DEZEGHER, F ;
DAABOUL, J ;
GRUMBACH, MM ;
KAPLAN, SL .
ENDOCRINOLOGY, 1989, 124 (03) :1114-1117
[9]   AMINO-ACIDS AUGMENT INSULINS SUPPRESSION OF WHOLE-BODY PROTEOLYSIS [J].
FLAKOLL, PJ ;
KULAYLAT, M ;
FREXESSTEED, M ;
HOURANI, H ;
BROWN, LL ;
HILL, JO ;
ABUMRAD, NN .
AMERICAN JOURNAL OF PHYSIOLOGY, 1989, 257 (06) :E839-E847
[10]  
FOWDEN AL, 1989, J DEV PHYSIOL, V12, P173