Tsuura Y, Ishida H, Nishimura M, Fujimoto S, Kajikawa M, Seino Y
Department of Metabolism and Clinical Nutrition, Kyoto University Faculty of Medicine, Japan.
Biochem Biophys Res Commun. 1998 Aug 28;249(3):853-7. doi: 10.1006/bbrc.1998.9240.
The alterations of the ATP concentration in response to fuel secretagogues such as glucose, glyceraldehyde, and ketoisocaproate (KIC) were investigated in a single islet. The intraislet ATP concentration was transiently elevated and then decreased to a level slightly higher than basal. To asses the ATP content under conditions of reduced ATP consumption, the Na-K pump blocker ouabain was used. The elevation of ATP concentration was found unexpectedly to be suppressed under ouabain in the islet, even when incubated with any of the secretagogues. High glucose did not elevate the intracellular creatine phosphate during incubation with ouabain. Since the suppression rate for the intraislet ATP elevation was considerably smaller with KIC than with glyceraldehyde and glucose, we conclude that ouabain inhibits ATP production, at least in part, in the glycolytic pathway through a feedback mechanism.
在单个胰岛中研究了ATP浓度对诸如葡萄糖、甘油醛和α-酮异己酸(KIC)等燃料促分泌剂的反应变化。胰岛内的ATP浓度短暂升高,然后降至略高于基础水平。为了评估在ATP消耗减少的条件下的ATP含量,使用了钠钾泵阻滞剂哇巴因。出乎意料的是,即使与任何一种促分泌剂一起孵育,在胰岛中哇巴因存在的情况下ATP浓度的升高也受到抑制。在与哇巴因一起孵育期间,高葡萄糖并未提高细胞内磷酸肌酸水平。由于KIC对胰岛内ATP升高的抑制率明显小于甘油醛和葡萄糖,我们得出结论,哇巴因至少部分地通过反馈机制抑制糖酵解途径中的ATP产生。