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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Transcellular biosynthesis of eicosanoid lipid mediators
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Transcellular biosynthesis of eicosanoid lipid mediators

机译:类花生酸脂质介质的跨细胞生物合成

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The synthesis of oxygenated eicosanoids is the result of the coordinated action of several enzymatic activities, from phospholipase A(2) that releases the polyunsaturated fatty acids from membrane phospholipids, to primary oxidative enzymes, such as cydooxygenases and lipoxygenases, to isomerases, synthases and hydrolases that carry out the final synthesis of the biologically active metabolites. Cells possessing the entire enzymatic machinery have been studied as sources of bioactive eicosanoids, but early on evidence proved that biosynthetic intermediates, albeit unstable, could move from one cell type to another. The biosynthesis of bioactive compounds could therefore be the result of a coordinated effort by multiple cell types that has been named transcellular biosynthesis of the eicosanoids. In several cases cells not capable of carrying out the complete biosynthetic process, due to the lack of key enzymes, have been shown to efficiently contribute to the final production of prostaglandins, leukotrienes and lipoxins. We will review in vitro studies, complex functional models, and in vivo evidences of the transcellular biosynthesis of eicosanoids and the biological relevance of the metabolites resulting from this unique biosynthetic pathway. This article is part of a Special Issue entitled "Oxygenated metabolism of PUFA: analysis and biological relevance". (C) 2014 Elsevier B.V. All rights reserved.
机译:氧化类花生酸的合成是几种酶活性的协同作用的结果,从磷脂酶A(2)释放膜磷脂中的多不饱和脂肪酸到初级氧化酶,例如环氧化酶和脂氧化酶,到异构酶,合酶和水解酶进行生物活性代谢物的最终合成。已经研究了具有完整酶促机制的细胞作为生物活性类二十烷酸的来源,但早期证据表明,生物合成中间体尽管不稳定,但可以从一种细胞类型转移到另一种细胞类型。因此,生物活性化合物的生物合成可能是多种细胞类型协同努力的结果,这种细胞类型被称为类花生酸的跨细胞生物合成。在某些情况下,由于缺少关键的酶,无法进行完整的生物合成过程的细胞已被证明有效地促进了前列腺素,白三烯和脂蛋白的最终生产。我们将审查体外研究,复杂的功能模型以及类花生酸的跨细胞生物合成以及这种独特的生物合成途径产生的代谢物的生物学相关性的体内证据。本文是名为“ PUFA的氧合代谢:分析和生物学相关性”的特刊的一部分。 (C)2014 Elsevier B.V.保留所有权利。

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