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在完整的HIT-T15细胞中,腺苷酸激酶催化的磷酸转移抑制先于葡萄糖诱导的胰岛素分泌并与之相关。

Suppression of adenylate kinase catalyzed phosphotransfer precedes and is associated with glucose-induced insulin secretion in intact HIT-T15 cells.

作者信息

Olson L K, Schroeder W, Robertson R P, Goldberg N D, Walseth T F

机构信息

Department of Pharmacology, Division of Diabetes, Endocrinology, and Metabolism, University of Minnesota, Minneapolis, Minnesota 55455, USA.

出版信息

J Biol Chem. 1996 Jul 12;271(28):16544-52. doi: 10.1074/jbc.271.28.16544.

Abstract

Adenine nucleotide metabolism was characterized in intact insulin secreting HIT-T15 cells during the transition from non-stimulated (i. e. 0.2 mM glucose) to the glucose-stimulated secretory state. Metabolic dynamics were monitored by assessing rates of appearance of 18O-labeled phosphoryls of endogenous nucleotides in cells incubated in medium enriched in [18O]water. Most prominent of the metabolic alterations associated with stimulated insulin secretion was the suppression in the rate of adenylate kinase (AK)-catalyzed phosphorylation of AMP by ATP. This was manifest as a graded decrease of up to 50% in the rate of appearance of beta-18O-labeled species of ADP and ATP and corresponded to the magnitude of the secretory response elicited over a range of stimulatory glucose concentrations. The only nucleotide exhibiting a significant concentration change associated with suppression of AK activity was AMP, which decreased by about 50%, irrespective of the glucose concentration. Leucine-stimulated secretion also decreased the rate of AK-catalyzed phosphotransfer. This secretory stimulus-related suppression of AK-catalyzed phosphotransfer occurs within 45 s of glucose addition, precedes insulin secretion, depends on the internalization and metabolism of glucose, and is independent of membrane depolarization and the influx of extracellular calcium. The secretory stimulus-induced decrease in AK-catalyzed phosphotransfer, therefore occurs prior to or at the time of KATP+ channel closure but it is not associated with or a consequence of events occurring subsequent to KATP+ channel closure. These results indicate that AK-catalyzed phosphotransfer may be a determinant of ATP to ADP conversion rates in the KATP+ channel microenvironment; secretory stimuli-linked decreased rates of AK-catalyzed ADP generation from ATP (and AMP) would translate into an increased probability of ATP-liganded and, therefore, closed state of the channel.

摘要

在完整的胰岛素分泌型HIT-T15细胞从非刺激状态(即0.2 mM葡萄糖)转变为葡萄糖刺激的分泌状态的过程中,对腺嘌呤核苷酸代谢进行了表征。通过评估在富含[18O]水的培养基中孵育的细胞内源性核苷酸的18O标记磷酸基团的出现速率,监测代谢动力学。与刺激胰岛素分泌相关的最显著代谢改变是腺苷酸激酶(AK)催化的ATP对AMP磷酸化速率的抑制。这表现为β-18O标记的ADP和ATP出现速率分级下降高达50%,并且与一系列刺激葡萄糖浓度下引发的分泌反应幅度相对应。与AK活性抑制相关的唯一出现显著浓度变化的核苷酸是AMP,无论葡萄糖浓度如何,其浓度均下降约50%。亮氨酸刺激的分泌也降低了AK催化的磷酸转移速率。这种与分泌刺激相关的AK催化磷酸转移抑制在添加葡萄糖后45秒内发生,先于胰岛素分泌,依赖于葡萄糖的内化和代谢,并且独立于膜去极化和细胞外钙内流。因此,分泌刺激诱导的AK催化磷酸转移减少发生在KATP+通道关闭之前或之时,但它与KATP+通道关闭后发生的事件无关,也不是其结果。这些结果表明,AK催化的磷酸转移可能是KATP+通道微环境中ATP向ADP转化率的一个决定因素;与分泌刺激相关的AK催化的由ATP(和AMP)生成ADP的速率降低将转化为ATP结合的概率增加,从而导致通道处于关闭状态。

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