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利用在过氧化物酶体中合成聚羟基脂肪酸酯的转基因植物分析不饱和脂肪酸β-氧化的替代途径。

Analysis of the alternative pathways for the beta-oxidation of unsaturated fatty acids using transgenic plants synthesizing polyhydroxyalkanoates in peroxisomes.

作者信息

Allenbach L, Poirier Y

机构信息

Institut d'Ecologie-Biologie et Physiologie Végétales, Bâtiment de Biologie, Université de Lausanne, CH-1015 Lausanne, Switzerland.

出版信息

Plant Physiol. 2000 Nov;124(3):1159-68. doi: 10.1104/pp.124.3.1159.

Abstract

Degradation of fatty acids having cis-double bonds on even-numbered carbons requires the presence of auxiliary enzymes in addition to the enzymes of the core beta-oxidation cycle. Two alternative pathways have been described to degrade these fatty acids. One pathway involves the participation of the enzymes 2, 4-dienoyl-coenzyme A (CoA) reductase and Delta(3)-Delta(2)-enoyl-CoA isomerase, whereas the second involves the epimerization of R-3-hydroxyacyl-CoA via a 3-hydroxyacyl-CoA epimerase or the action of two stereo-specific enoyl-CoA hydratases. Although degradation of these fatty acids in bacteria and mammalian peroxisomes was shown to involve mainly the reductase-isomerase pathway, previous analysis of the relative activity of the enoyl-CoA hydratase II (also called R-3-hydroxyacyl-CoA hydro-lyase) and 2,4-dienoyl-CoA reductase in plants indicated that degradation occurred mainly through the epimerase pathway. We have examined the implication of both pathways in transgenic Arabidopsis expressing the polyhydroxyalkanoate synthase from Pseudomonas aeruginosa in peroxisomes and producing polyhydroxyalkanoate from the 3-hydroxyacyl-CoA intermediates of the beta-oxidation cycle. Analysis of the polyhydroxyalkanoate synthesized in plants grown in media containing cis-10-heptadecenoic or cis-10-pentadecenoic acids revealed a significant contribution of both the reductase-isomerase and epimerase pathways to the degradation of these fatty acids.

摘要

具有偶数碳原子上顺式双键的脂肪酸降解,除了核心β-氧化循环的酶之外,还需要辅助酶的存在。已经描述了两种降解这些脂肪酸的替代途径。一种途径涉及2,4-二烯酰辅酶A(CoA)还原酶和Δ(3)-Δ(2)-烯酰辅酶A异构酶的参与,而第二种途径涉及通过3-羟基酰基辅酶A差向异构酶使R-3-羟基酰基辅酶A差向异构化或两种立体特异性烯酰辅酶A水合酶的作用。虽然已表明细菌和哺乳动物过氧化物酶体中这些脂肪酸的降解主要涉及还原酶-异构酶途径,但先前对植物中烯酰辅酶A水合酶II(也称为R-3-羟基酰基辅酶A水解酶)和2,4-二烯酰辅酶A还原酶相对活性的分析表明,降解主要通过差向异构酶途径发生。我们已经研究了这两种途径在过氧化物酶体中表达来自铜绿假单胞菌的聚羟基脂肪酸酯合酶并从β-氧化循环的3-羟基酰基辅酶A中间体产生聚羟基脂肪酸酯的转基因拟南芥中的意义。对在含有顺式-10-十七碳烯酸或顺式-10-十五碳烯酸的培养基中生长的植物中合成的聚羟基脂肪酸酯的分析表明,还原酶-异构酶途径和差向异构酶途径对这些脂肪酸的降解都有重要贡献。

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