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三氟拉嗪对颗粒状和可溶性线粒体F1的ATP合成及水解的抑制作用:与H2PO4-的竞争

Inhibition by trifluoperazine of ATP synthesis and hydrolysis by particulate and soluble mitochondrial F1: competition with H2PO4-.

作者信息

García J J, Tuena de Gómez-Puyou M, Gómez-Puyou A

机构信息

Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, D.F. México.

出版信息

J Bioenerg Biomembr. 1995 Feb;27(1):127-36. doi: 10.1007/BF02110340.

Abstract

The effect of trifluoperazine (TFP) on the ATPase activity of soluble and particulate F1-ATPase and on ATP synthesis driven by succinate oxidation in submitochondrial particles from bovine heart was studied at pH 7.4 and 8.8. At the two pH, TFP inhibited ATP hydrolysis. Inorganic phosphate protected against the inhibiting action of TFP. The results on the effect of various concentrations of phosphate in the reversal of the action of TFP on hydrolysis at pH 7.4 and 8.8 showed that H2PO4- is the species that competes with TFP. The effect of TFP on oxidative phosphorylation was studied at concentrations that do not produce uncoupling or affect the aerobic oxidation of succinate (< 15 microM). TFP inhibited oxidative phosphorylation to a higher extent at pH 8.8 than at pH 7.4; this was through a diminution in the Vmax, and an increase in the Km for phosphate. Data on phosphate uptake during oxidative phosphorylation at several pH showed that H2PO4- is the true substrate for oxidative phosphorylation. Thus, in both synthesis and hydrolysis of ATP, TFP and H2PO4- interact with a common site. However, there is a difference in the sensitivity to TFP of ATP synthesis and hydrolysis; this is more noticeable at pH 8.8, i.e., ATPase activity of soluble F1 remains at about 40% of the activity of the control in a concentration range of TFP of 40-100 microM, whereas in oxidative phosphorylation 14 microM TFP produces a 60% inhibition of phosphate uptake.

摘要

在pH 7.4和8.8条件下,研究了三氟拉嗪(TFP)对牛心亚线粒体颗粒中可溶性和颗粒性F1 - ATP酶的ATP酶活性以及对琥珀酸氧化驱动的ATP合成的影响。在这两个pH值下,TFP均抑制ATP水解。无机磷酸盐可保护免受TFP的抑制作用。关于不同浓度磷酸盐对TFP在pH 7.4和8.8条件下水解作用逆转影响的结果表明,H2PO4-是与TFP竞争的物质。在不产生解偶联或不影响琥珀酸有氧氧化的浓度(<15 microM)下研究了TFP对氧化磷酸化的影响。TFP在pH 8.8时比在pH 7.4时更能抑制氧化磷酸化;这是通过降低Vmax以及增加磷酸盐的Km来实现的。在几个pH值下氧化磷酸化过程中磷酸盐摄取的数据表明,H2PO4-是氧化磷酸化的真正底物。因此,在ATP的合成和水解过程中,TFP和H2PO4-与一个共同位点相互作用。然而,ATP合成和水解对TFP的敏感性存在差异;这在pH 8.8时更为明显,即,在40 - 100 microM的TFP浓度范围内,可溶性F1的ATP酶活性保持在对照活性的约40%,而在氧化磷酸化中,14 microM的TFP会导致磷酸盐摄取受到60%的抑制。

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