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未处理和氯贝丁酯处理大鼠组织中一元羧基辅酶A、ω-羟基一元羧基辅酶A和二元羧基辅酶A酯的过氧化物酶体和线粒体β-氧化作用

Peroxisomal and mitochondrial beta-oxidation of monocarboxylyl-CoA, omega-hydroxymonocarboxylyl-CoA and dicarboxylyl-CoA esters in tissues from untreated and clofibrate-treated rats.

作者信息

Vamecq J, Draye J P

机构信息

Laboratoire de Chimie Physiologique, International Institute of Cellular and Molecular Pathology, Brussels, Belgium.

出版信息

J Biochem. 1989 Aug;106(2):216-22. doi: 10.1093/oxfordjournals.jbchem.a122835.

Abstract

In control rats, long-chain monocarboxylyl-CoA, omega-hydroxymonocarboxylyl-CoA, and dicarboxylyl-CoA esters were substrates for hepatic, renal, and myocardial peroxisomal beta-oxidation. The latter enzyme system could not be detected in skeletal muscle. Clofibrate treatment resulted in an enhancement of peroxisomal beta-oxidizing capacity in various tissues. Intact mitochondria from control rat liver and kidney cortex incubated in the presence of L-carnitine were capable of oxidizing long-chain monocarboxylyl-CoAs and omega-hydroxymonocarboxylyl-CoAs but not dicarboxylyl-CoAs. However, control rat liver mitochondria permeabilized by digitonin oxidized dodecanedioyl-CoA indicating that the liver mitochondrial beta-oxidation system can act on dicarboxylyl-CoA esters even if the overall intact mitochondrial system is inactive on these substrates. Intact liver mitochondria from clofibrate-treated animals rapidly oxidized lauroyl-CoA and 12-hydroxylauroyl-CoA but not dodecanedioyl-CoA. These mitochondria were active on hexadecanedioyl-CoA and this activity amounted to 20-25% of that measured with palmitoyl-CoA and 16-hydroxypalmitoyl-CoA as substrates. No mitochondrial dicarboxylyl-CoA oxidation could be detected in kidney cortex from animals receiving clofibrate in their diet. Heart and skeletal muscle intact mitochondria from untreated and clofibrate-treated rats were capable of oxidizing each type of acyl-CoA as a substrate. Dicarboxylyl-CoA synthetase and carnitine dicarboxylyltransferase activities were detected in various tissues from untreated and clofibrate-treated rats with the exception of carnitine dodecanedioyltransferase reaction in livers from untreated and clofibrate-treated rats. In skeletal muscle, the acyl-CoA synthetase activities could be detected only in the presence of detergents.

摘要

在对照大鼠中,长链单羧基酰基辅酶A、ω-羟基单羧基酰基辅酶A和二羧基酰基辅酶A酯是肝脏、肾脏和心肌过氧化物酶体β-氧化的底物。在骨骼肌中未检测到后一种酶系统。氯贝丁酯处理导致各种组织中过氧化物酶体β-氧化能力增强。在L-肉碱存在下孵育的对照大鼠肝脏和肾皮质的完整线粒体能够氧化长链单羧基酰基辅酶A和ω-羟基单羧基酰基辅酶A,但不能氧化二羧基酰基辅酶A。然而,经洋地黄皂苷通透处理的对照大鼠肝脏线粒体能够氧化十二烷二酰辅酶A,这表明即使完整的线粒体系统对这些底物无活性,肝脏线粒体β-氧化系统也能作用于二羧基酰基辅酶A酯。氯贝丁酯处理动物的完整肝脏线粒体能够快速氧化月桂酰辅酶A和12-羟基月桂酰辅酶A,但不能氧化十二烷二酰辅酶A。这些线粒体对十六烷二酰辅酶A有活性,且该活性相当于以棕榈酰辅酶A和16-羟基棕榈酰辅酶A为底物时测得活性的20%-25%。在饮食中摄入氯贝丁酯的动物的肾皮质中未检测到线粒体二羧基酰基辅酶A氧化。未处理和氯贝丁酯处理大鼠的心脏和骨骼肌完整线粒体能够氧化每种类型的酰基辅酶A作为底物。在未处理和氯贝丁酯处理大鼠的各种组织中检测到二羧基酰基辅酶A合成酶和肉碱二羧基酰基转移酶活性,但未处理和氯贝丁酯处理大鼠肝脏中的肉碱十二烷二酰转移酶反应除外。在骨骼肌中,只有在去污剂存在的情况下才能检测到酰基辅酶A合成酶活性。

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