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3-苯丙酮酸诱导胰岛素释放的机制。代谢方面。

Mechanism of 3-phenylpyruvate-induced insulin release. Metabolic aspects.

作者信息

Malaisse W J, Sener A, Welsh M, Malaisse-Lagae F, Hellerström C, Christophe J

出版信息

Biochem J. 1983 Mar 15;210(3):921-7. doi: 10.1042/bj2100921.

Abstract
  1. The metabolism and metabolic effects of 3-phenylpyruvate were examined in rat pancreatic islets. 2. Islet homogenates catalysed transamination reactions between 3-phenylpyruvate and L-glutamate, L-leucine, L-norleucine or L-valine. 3-Phenylpyruvate failed to activate glutamate dehydrogenase. 3. 3-Phenylpyruvate rapidly entered into islet cells, was extensively converted into phenylalanine but slowly oxidized. 4. The conversion of phenylpyruvate into phenylalanine coincided with a fall in the content of several amino acids (especially glutamate and aspartate) in the islets and incubation medium, the accumulation of 2-oxoglutarate and a modest fall in the NH4+ production rate. 5. 3-Phenylpyruvate failed to affect 14CO2 output from islets prelabelled with [U-14C]palmitate, but augmented 14CO2 output from islets prelabelled or incubated with L-[U-14C]glutamine. 6. In the presence of L-glutamine, 3-phenylpyruvate augmented the ATP/ADP ratio and NAD(P)H islet content, and caused a rapid and sustained decrease in the outflow of radioactivity from islets prelabelled with [2-3H]adenosine. 7. These data support the view that the insulin-releasing capacity of 3-phenylpyruvate coincides with an increase in the catabolism of endogenous amino acids acting as 'partners' in transamination reactions leading to the conversion of 3-phenylpyruvate into phenylalanine.
摘要
  1. 在大鼠胰岛中检测了3-苯丙酮酸的代谢及其代谢效应。2. 胰岛匀浆催化了3-苯丙酮酸与L-谷氨酸、L-亮氨酸、L-正亮氨酸或L-缬氨酸之间的转氨反应。3-苯丙酮酸未能激活谷氨酸脱氢酶。3. 3-苯丙酮酸迅速进入胰岛细胞,大量转化为苯丙氨酸,但氧化缓慢。4. 苯丙酮酸向苯丙氨酸的转化与胰岛和孵育培养基中几种氨基酸(尤其是谷氨酸和天冬氨酸)含量的下降、2-氧代戊二酸的积累以及NH4+产生速率的适度下降同时发生。5. 3-苯丙酮酸不影响用[U-14C]棕榈酸预先标记的胰岛的14CO2释放,但增加了用L-[U-14C]谷氨酰胺预先标记或孵育的胰岛的14CO2释放。6. 在L-谷氨酰胺存在下,3-苯丙酮酸提高了ATP/ADP比值和胰岛中NAD(P)H的含量,并使预先用[二-3H]腺苷标记的胰岛的放射性流出迅速且持续减少。7. 这些数据支持这样一种观点,即3-苯丙酮酸的胰岛素释放能力与内源性氨基酸分解代谢的增加相一致,这些氨基酸在导致3-苯丙酮酸转化为苯丙氨酸的转氨反应中充当 “伙伴”。

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