Transamination Is Required for α-Ketoisocaproate but Not Leucine to Stimulate Insulin Secretion

被引:44
作者
Zhou, Yingsheng
Jetton, Thomas L. [2 ]
Goshorn, Stephanie
Lynch, Christopher J.
She, Pengxiang [1 ]
机构
[1] Penn State Univ, Coll Med, Dept Cellular & Mol Physiol, Hershey, PA 17033 USA
[2] Univ Vermont, Dept Med, Burlington, VT 05405 USA
基金
美国国家卫生研究院;
关键词
BRANCHED-CHAIN AMINO; PANCREATIC-ISLET METABOLISM; B-CELL MITOCHONDRIA; GLUTAMATE-DEHYDROGENASE; 2-KETO ACIDS; BETA-CELLS; PYRUVATE-CARBOXYLASE; MALIC ENZYME; RELEASE; GLUCOSE;
D O I
10.1074/jbc.M110.136846
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
It remains unclear how alpha-ketoisocaproate (KIC) and leucine are metabolized to stimulate insulin secretion. Mitochondrial BCATm (branched-chain aminotransferase) catalyzes reversible transamination of leucine and alpha-ketoglutarate to KIC and glutamate, the first step of leucine catabolism. We investigated the biochemical mechanisms of KIC and leucine-stimulated insulin secretion (KICSIS and LSIS, respectively) using BCATm(-/-) mice. In static incubation, BCATm disruption abolished insulin secretion by KIC, D,L-alpha-keto-beta-methylvalerate, and alpha-ketocaproate without altering stimulation by glucose, leucine, or alpha-ketoglutarate. Similarly, during pancreas perfusions in BCATm(-/-) mice, glucose and arginine stimulated insulin release, whereas KICSIS was largely abolished. During islet perifusions, KIC and 2 mM glutamine caused robust dose-dependent insulin secretion in BCATm(+/+) not BCATm(-/-) islets, whereas LSIS was unaffected. Consistently, in contrast to BCATm(+/+) islets, the increases of the ATP concentration and NADPH/NADP(+) ratio in response to KIC were largely blunted in BCATm(-/-) islets. Compared with nontreated islets, the combination of KIC/glutamine (10/2 mM) did not influence alpha-ketoglutarate concentrations but caused 120 and 33% increases in malate in BCATm(+/+) and BCATm(-/-) islets, respectively. Although leucine oxidation and KIC transamination were blocked in BCATm(-/-) islets, KIC oxidation was unaltered. These data indicate that KICSIS requires transamination of KIC and glutamate to leucine and alpha-ketoglutarate, respectively. LSIS does not require leucine catabolism and may be through leucine activation of glutamate dehydrogenase. Thus, KICSIS and LSIS occur by enhancing the metabolism of glutamine/glutamate to alpha-ketoglutarate, which, in turn, is metabolized to produce the intracellular signals such as ATP and NADPH for insulin secretion.
引用
收藏
页码:33718 / 33726
页数:9
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