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大鼠脑线粒体中脂肪酸氧化的调节:ADP对高棕榈酸氧化速率的抑制作用。

Regulation of fatty acid oxidation in rat brain mitochondria: inhibition of high rates of palmitate oxidation by ADP.

作者信息

Kawamura N

机构信息

Department of Neurology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Arch Biochem Biophys. 1988 Aug 1;264(2):546-52. doi: 10.1016/0003-9861(88)90320-7.

Abstract

Regulation of oxidation of [1-14C]palmitate in rat brain mitochondria has been investigated in purified mitochondria of nonsynaptic origin prepared by use of a Ficoll/sucrose density gradient. The mitochondrial preparation contained considerable Mg2+-ATPase activity, but was virtually free of contamination with nonmitochondrial fractions. Palmitate oxidation was inhibited by increasing the concentration of ATP in the assay system to near-physiological levels (2 mM), and the inhibition at 2 or 4 mM ATP was analyzed by comparing it with palmitate oxidation at near-maximal rates with low levels of ATP (0.5 or 1 mM). Inhibition was increased by the addition of ADP or by increasing the concentration of Mg2+ in the assay system, whereas inhibition was decreased by decreasing the concentration of mitochondrial protein or L-carnitine in the assay system. Increasing CoA concentration also had a deinhibitory effect. With 0.5 or 1 mM ATP, however, neither inhibition by added ADP nor protein concentration-dependent inhibition was observed, and the rate of oxidation was saturated with increasing concentrations of Mg2+, L-carnitine, or CoA. These results indicated that ADP was involved in the inhibition of high rates of palmitate oxidation in the presence of sufficient ATP and L-carnitine. The inhibitory effect of increasing the concentration of mitochondrial protein could be explained by the enhanced amounts of ADP present in the preparation; similarly, increased concentrations of Mg2+ would provide higher levels of ADP by stimulating the Mg2+-ATPase reaction. We discuss the possibility that the transport of ADP across the inner membrane of brain mitochondria is coupled to the inhibition of palmitate oxidation.

摘要

利用Ficoll/蔗糖密度梯度制备的非突触来源的纯化线粒体,对大鼠脑线粒体中[1-14C]棕榈酸氧化的调节进行了研究。该线粒体制剂含有相当高的Mg2+-ATP酶活性,但几乎没有非线粒体组分的污染。在测定系统中,将ATP浓度增加到接近生理水平(2 mM)可抑制棕榈酸氧化,并通过将2 mM或4 mM ATP时的抑制作用与低水平ATP(0.5或1 mM)下接近最大速率的棕榈酸氧化进行比较来分析。添加ADP或增加测定系统中Mg2+的浓度可增强抑制作用,而降低测定系统中线粒体蛋白或L-肉碱的浓度则可降低抑制作用。增加辅酶A浓度也有解除抑制的作用。然而,在0.5或1 mM ATP时,未观察到添加ADP的抑制作用或蛋白质浓度依赖性抑制作用,并且氧化速率随着Mg2+、L-肉碱或辅酶A浓度的增加而饱和。这些结果表明,在存在足够的ATP和L-肉碱的情况下,ADP参与了对高棕榈酸氧化速率的抑制。增加线粒体蛋白浓度的抑制作用可以通过制剂中存在的ADP量增加来解释;同样,增加Mg2+的浓度会通过刺激Mg2+-ATP酶反应提供更高水平的ADP。我们讨论了ADP跨脑线粒体内膜的转运与棕榈酸氧化抑制相关的可能性。

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