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牛肾上腺嗜铬颗粒中镁离子依赖性ATP酶的研究。特别提及抑制剂和能量偶联的作用。

Studies on Mg2+-dependent ATPase in bovine adrenal chromaffin granules. With special reference to the effect of inhibitors and energy coupling.

作者信息

Grønberg M, Flatmark T

出版信息

Eur J Biochem. 1987 Apr 1;164(1):1-8. doi: 10.1111/j.1432-1033.1987.tb10983.x.

Abstract

The Mg2+-ATPase activities of bovine adrenal chromaffin granules were studied in highly purified preparations of granule ghosts and in intact organelles. The overall ATPase activity (150-250 nmol ADP min-1 mg-1) of the granule ghost preparations was inhibited less than 5% by the bathophenanthroline chelate of Fe(II), a potent inhibitor of mitochondrial F1-ATPase. This small inhibition can be accounted for by a very minor contamination with mitochondria or mitochondrial fragments. The overall ATPase activity of native granule ghosts was inhibited about 75% by N-ethylmaleimide, with half-maximal inhibition at about 20 microM. The titration curve was slightly shifted towards higher concentrations as compared to the inhibition curve for the proton pump activity, which was completely inhibited at 25 microM. N,N'-Dicyclohexylcarbodiimide inhibited the overall ATPase activity by 75-80% at 1.1 mumol/mg protein, a concentration that completely abolished the proton pump activity. Low concentrations (10 microM) of vanadate inhibited the overall ATPase activity by about 15% but had no effect on the proton pump activity, which was partly inhibited only at higher vanadate concentrations. Our attempts to assign a function to the vanadate-sensitive and N-ethylmaleimide-insensitive ATPase have so far been unsuccessful. In particular, our assay for ATP diphosphohydrolase activity was negative, although the chromaffin granule ghosts revealed a low Mg2+-ADPase activity (11.8 nmol AMP min-1 mg-1 protein). In intact chromaffin granules the specific Mg2+-ATPase activity (50-70 nmol ADP min-1 mg-1) was stimulated 2-fold by uncouplers, as compared to 1.6-1.7-fold in granule ghosts. The degree of energy coupling was rather independent of the external pH (6.5 less than pH less than 8.0) and temperature (20-45 degrees C). As expected, partial inhibition (about 15%) of the overall ATPase activity by 10 microM vanadate increased the ATPase control ratio. ADP was found to be a potent inhibitor of the proton pump activity with MgATP as the substrate, and the effect can partly be explained by a competitive type of inhibition of the hydrolytic reaction. This effect of ADP explains some of the kinetic data reported for MgATP-dependent (H+-ATPase-dependent) reactions in this organelle, notably the energy-dependent accumulation and storage of catecholamines.

摘要

在颗粒膜泡和完整细胞器的高度纯化制剂中研究了牛肾上腺嗜铬颗粒的Mg2 + -ATP酶活性。颗粒膜泡制剂的总体ATP酶活性(150 - 250 nmol ADP min-1 mg-1)受到Fe(II)的bathophenanthroline螯合物(线粒体F1-ATP酶的有效抑制剂)的抑制小于5%。这种小的抑制作用可归因于线粒体或线粒体片段的极少量污染。天然颗粒膜泡的总体ATP酶活性受到N-乙基马来酰亚胺的抑制约75%,在约20 microM时抑制作用达到半数最大。与质子泵活性的抑制曲线相比,滴定曲线向更高浓度略有偏移,质子泵活性在25 microM时被完全抑制。N,N'-二环己基碳二亚胺在1.1 mumol/mg蛋白质浓度下抑制总体ATP酶活性75 - 80%,该浓度完全消除了质子泵活性。低浓度(10 microM)的钒酸盐抑制总体ATP酶活性约15%,但对质子泵活性没有影响,质子泵活性仅在较高钒酸盐浓度下部分受到抑制。我们迄今为止试图为钒酸盐敏感和N-乙基马来酰亚胺不敏感的ATP酶赋予功能的尝试均未成功。特别是,我们对ATP二磷酸水解酶活性的测定为阴性,尽管嗜铬颗粒膜泡显示出低的Mg2 + -ADP酶活性(11.8 nmol AMP min-1 mg-1蛋白质)。在完整的嗜铬颗粒中,与颗粒膜泡中1.6 - 1.7倍相比,解偶联剂使特定的Mg2 + -ATP酶活性(50 - 70 nmol ADP min-1 mg-1)提高了2倍。能量偶联程度相当独立于外部pH(6.5小于pH小于8.0)和温度(20 - 45摄氏度)。如预期的那样,10 microM钒酸盐对总体ATP酶活性的部分抑制(约)15%增加了ATP酶控制率。发现ADP是质子泵活性以MgATP为底物时的有效抑制剂,并且这种作用可以部分地通过水解反应的竞争性抑制类型来解释。ADP的这种作用解释了关于该细胞器中MgATP依赖性(H + -ATP酶依赖性)反应报道的一些动力学数据,特别是儿茶酚胺的能量依赖性积累和储存。

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