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首页> 外文期刊>Diabetes >Massive Augmentation of Stimulated Insulin Secretion Induced by Fatty Acid-Free BSA in Rat Pancreatic Islets.
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Massive Augmentation of Stimulated Insulin Secretion Induced by Fatty Acid-Free BSA in Rat Pancreatic Islets.

机译:不含脂肪酸的牛血清白蛋白引起的大鼠胰岛的胰岛素分泌的大量增加。

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Incubation of rat pancreatic islets for 4-6 h with 100 mumol/l fatty acid-free BSA induced a 3- to 10-fold enhancement of insulin release to a subsequent challenge with 16.7 mmol/l glucose, without changing the typical biphasic pattern of the response. A similar enhancement was observed with other stimuli, such as leucine, depolarizing concentrations of KCl and tolbutamide, pointing to a general phenomenon and common mechanism for the augmentation. Norepinephrine completely blocked the stimulated response. The protein kinase C (PKC) inhibitor Ro 31-8220, which acts at the ATP-binding site and inhibits all PKC isoforms, strongly inhibited the enhancement of a subsequent glucose challenge when present during the BSA pretreatment period. In contrast, Go 6976, an inhibitor of conventional PKC isoforms, was without effect, even at the high concentration of 1 mumol/l. Preincubation with calphostin C, which competes for the diacylglycerol (DAG)-binding site, therefore inhibiting conventional, novel, and PKC isoforms of the PKD type, completely abolished the enhancing effect of the BSA but did not affect secretion in islets treated with 10 mumol/l fatty acid-free BSA. We conclude that the remarkable enhancement of insulin release is due to a change in glucose signaling and activation of a novel PKC isoform or a DAG-binding protein.
机译:将大鼠胰岛与100 mumol / l不含脂肪酸的BSA孵育4-6小时,可将胰岛素释放增强3至10倍,随后对葡萄糖的浓度为16.7 mmol / l的挑战不改变其典型的双相模式响应。在其他刺激如亮氨酸,KCl和甲苯磺丁酰胺的去极化浓度中也观察到了类似的增强作用,这表明了这种普遍现象和增强的共同机制。去甲肾上腺素完全阻断了刺激的反应。蛋白质激酶C(PKC)抑制剂Ro 31-8220,其作用于ATP结合位点并抑制所有PKC亚型,当在BSA预处理期间存在时,强烈抑制后续葡萄糖攻击的增强。相反,Go 6976是常规PKC亚型的抑制剂,即使在1μmol/ l的高浓度下也没有作用。与钙磷蛋白C的预孵育可竞争二酰基甘油(DAG)的结合位点,因此抑制了PKD类型的常规,新颖和PKC亚型,完全废除了BSA的增强作用,但不影响用10μmol摩尔处理的胰岛的分泌/ l无脂肪酸的BSA。我们得出结论,胰岛素释放的显着增强是由于葡萄糖信号传导的变化和新型PKC同工型或DAG结合蛋白的激活所致。

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