β-cell adaptation to insulin resistance -: Increased pyruvate carboxylase and malate-pyruvate shuttle activity in islets of nondiabetic Zucker fatty rats

被引:127
作者
Liu, YQ [1 ]
Jetton, TL [1 ]
Leahy, JL [1 ]
机构
[1] Univ Vermont, Coll Med, Div Endocrinol Diabet & Metab, Burlington, VT 05405 USA
关键词
D O I
10.1074/jbc.M207157200
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
The beta-cell biochemical mechanisms that account for the compensatory hyperfunction with insulin resistance (so-called beta-cell adaptation) are unknown. We investigated glucose metabolism in isolated islets from 10-12-week-old Zucker fatty (ZF) and Zucker lean (ZL) rats (results expressed per mg/islet of protein). ZF rats were obese, hyperlipidemic, and normoglycemic. They had a 3.8-fold increased beta-cell mass along with 3-10-fold increases in insulin secretion to various stimuli during pancreas perfusion despite insulin content per milligram of beta-cells being only one-third that of ZL rats. Islet glucose metabolism (utilization and oxidation) was 1.5-2-fold increased in the ZF islets despite pyruvate dehydrogenase activity being 30% lowered compared with the ZL islets. The reason was increased flux through pyruvate carboxylase (PC) and the malate-pyruvate and citrate-pyruvate shuttles based on the following observations (% ZL islets): increased V-max of PC (160%), malate dehydrogenase (170%), and malic enzyme (275%); elevated concentrations of oxaloacetate (150%), malate (250%), citrate (140%), and pyruvate (250%); and 2-fold increased release of malate from isolated mitochondria. Inhibition of PC by 5 mm phenylacetic acid markedly lowered glucose-induced insulin secretion in ZF and ZL islets. Thus, our results suggest that PC and the pyruvate shuttles are increased in ZF islets, and this accounts for glucose mitochondrial metabolism being increased when pyruvate dehydrogenase activity is reduced. As the anaplerosis pathways are implicated in glucose-induced insulin secretion and the synthesis of glucose-derived lipid and amino acids, our results highlight the potential importance of PC and the anaplerosis pathways in the enhanced insulin secretion and beta-cell growth that characterize beta-cell adaptation to insulin resistance.
引用
收藏
页码:39163 / 39168
页数:6
相关论文
共 50 条
[1]   SENSITIVE, PRECISE RADIOIMMUNOASSAY OF SERUM-INSULIN RELYING ON CHARCOAL SEPARATION OF BOUND AND FREE HORMONE MOIETIES [J].
ALBANO, JDM ;
EKINS, RP ;
TURNER, RC ;
MARITZ, G .
ACTA ENDOCRINOLOGICA, 1972, 70 (03) :487-+
[2]   Chronic exposure to free fatty acid reduces pancreatic β cell insulin content by increasing basal insulin secretion that is not compensated for by a corresponding increase in proinsulin biosynthesis translation [J].
Bollheimer, LC ;
Skelly, RH ;
Chester, MW ;
McGarry, JD ;
Rhodes, CJ .
JOURNAL OF CLINICAL INVESTIGATION, 1998, 101 (05) :1094-1101
[3]  
Brunzell JD, 1999, DIABETES CARE, V22, pC10
[4]   Changes in pancreatic islet glucokinase and hexokinase activities with increasing age, obesity, and the onset of diabetes [J].
Cockburn, BN ;
Ostrega, DM ;
Sturis, J ;
Kubstrup, C ;
Polonsky, KS ;
Bell, GI .
DIABETES, 1997, 46 (09) :1434-1439
[5]   The role of long-chain fatty acyl-CoA esters in β-cell signal transduction [J].
Corkey, BE ;
Deeney, JT ;
Yaney, GC ;
Tornheim, K ;
Prentki, M .
JOURNAL OF NUTRITION, 2000, 130 (02) :299S-304S
[6]   Role of NADH shuttle system in glucose-induced activation of mitochondrial metabolism and insulin secretion [J].
Eto, K ;
Tsubamoto, Y ;
Terauchi, Y ;
Sugiyama, T ;
Kishimoto, T ;
Takahashi, N ;
Yamauchi, N ;
Kubota, N ;
Murayama, S ;
Aizawa, S ;
Akanuma, Y ;
Aizawa, S ;
Kasai, H ;
Yazaki, Y ;
Kadowaki, T .
SCIENCE, 1999, 283 (5404) :981-985
[7]   Glucose-regulated anaplerosis and cataplerosis in pancreatic β-cells -: Possible implication of a pyruvate/citrate shuttle in insulin secretion [J].
Farfari, S ;
Schulz, V ;
Corkey, B ;
Prentki, M .
DIABETES, 2000, 49 (05) :718-726
[8]   Critical role for cataplerosis via citrate in glucose-regulated insulin release [J].
Flamez, D ;
Berger, V ;
Kruhoffer, M ;
Orntoft, T ;
Pipeleers, D ;
Schuit, FC .
DIABETES, 2002, 51 (07) :2018-2024
[9]   REPRODUCIBLE HIGH-YIELD OF RAT ISLETS BY STATIONARY INVITRO DIGESTION FOLLOWING PANCREATIC DUCTAL OR PORTAL VENOUS COLLAGENASE INJECTION [J].
GOTOH, M ;
MAKI, T ;
SATOMI, S ;
PORTER, J ;
BONNERWEIR, S ;
OHARA, CJ ;
MONACO, AP .
TRANSPLANTATION, 1987, 43 (05) :725-730
[10]   Fatty acids decrease IDX-1 expression in rat pancreatic islets and reduce GLUT2, glucokinase, insulin, and somatostatin levels [J].
Gremlich, S ;
Bonny, C ;
Waeber, G ;
Thorens, B .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (48) :30261-30269