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大鼠肝脏过氧化物酶体和大肠杆菌的3-羟基酰基辅酶A表异构酶在多不饱和脂肪酸的β-氧化中作为辅助酶发挥作用。

3-Hydroxyacyl-CoA epimerases of rat liver peroxisomes and Escherichia coli function as auxiliary enzymes in the beta-oxidation of polyunsaturated fatty acids.

作者信息

Yang S Y, Cuebas D, Schulz H

出版信息

J Biol Chem. 1986 Sep 15;261(26):12238-43.

PMID:3528151
Abstract

The beta-oxidation of 2-trans,4-cis-decadienoyl-CoA, an assumed metabolite of linoleic acid, by purified enzymes from mitochondria, peroxisomes, and Escherichia coli was studied. 2-trans,4-cis-Decadienoyl-CoA is an extremely poor substrate of the beta-oxidation system reconstituted from mitochondrial enzymes. The results of a kinetic evaluation lead to the conclusion that in mitochondria 2-trans,4-cis-decadienoyl-CoA is not directly beta-oxidized, but instead is reduced by NADPH-dependent 2,4-dienoyl-CoA reductase prior to its beta-oxidation. Hence, the mitochondrial beta-oxidation of 2-trans,4-cis-decadienoyl-CoA does not require 3-hydroxyacyl-CoA epimerase, a conclusion which agrees with the finding that 3-hydroxyacyl-CoA epimerase is absent from mitochondria (Chu, C.-H., and Schulz, H. (1985) FEBS Lett. 185, 129-134). However, 2-trans,4-cis-decadienoyl-CoA can be slowly oxidized by the bifunctional beta-oxidation enzyme from rat liver peroxisomes, as well as by the fatty acid oxidation complex from E. coli. The observed rates of 2-trans,4-cis-decadienoyl-CoA degradation by these two multi-functional proteins were significantly higher than the values calculated according to steady-state velocity equations derived for coupled enzyme reactions. This is attributed to the direct transfer of L-3-hydroxy-4-cis-decenoyl-CoA from the active site of enoyl-CoA hydratase to that of 3-hydroxyacyl-CoA dehydrogenase on the same protein molecule. All observations together lead to the suggestion that the chain shortening of 2-trans,4-cis-decadienoyl-CoA in peroxisomes and in E. coli occurs simultaneously by two different pathways. The major pathway involves the NADPH-dependent 2,4-dienoyl-CoA reductase, whereas 3-hydroxyacyl-CoA epimerase functions in the metabolism of D-3-hydroxyoctanoyl-CoA which is formed via the minor pathway.

摘要

对线粒体、过氧化物酶体和大肠杆菌中纯化的酶催化2-反式,4-顺式-癸二烯酰辅酶A(一种假定的亚油酸代谢产物)的β-氧化进行了研究。2-反式,4-顺式-癸二烯酰辅酶A是由线粒体酶重构的β-氧化系统的极差底物。动力学评估结果得出结论,在线粒体中,2-反式,4-顺式-癸二烯酰辅酶A不会直接进行β-氧化,而是在其β-氧化之前被依赖NADPH的2,4-二烯酰辅酶A还原酶还原。因此,2-反式,4-顺式-癸二烯酰辅酶A的线粒体β-氧化不需要3-羟酰基辅酶A差向异构酶,这一结论与线粒体中不存在3-羟酰基辅酶A差向异构酶的发现一致(朱,C.-H.,和舒尔茨,H.(1985年)《欧洲生物化学会联合会快报》185,129 - 134)。然而,2-反式,4-顺式-癸二烯酰辅酶A可被大鼠肝脏过氧化物酶体中的双功能β-氧化酶以及大肠杆菌中的脂肪酸氧化复合体缓慢氧化。观察到的这两种多功能蛋白质对2-反式,4-顺式-癸二烯酰辅酶A的降解速率显著高于根据耦合酶反应推导的稳态速度方程计算的值。这归因于L-3-羟基-4-顺式-癸烯酰辅酶A从烯酰辅酶A水合酶的活性位点直接转移到同一蛋白质分子上的3-羟酰基辅酶A脱氢酶的活性位点。所有观察结果共同表明,过氧化物酶体和大肠杆菌中2-反式,4-顺式-癸二烯酰辅酶A的链缩短通过两种不同途径同时发生。主要途径涉及依赖NADPH的2,4-二烯酰辅酶A还原酶,而3-羟酰基辅酶A差向异构酶在通过次要途径形成的D-3-羟基辛酰辅酶A的代谢中起作用。

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