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首页> 外文期刊>Pharmacological reports: PR >Transcellular biosynthesis of eicosanoids.
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Transcellular biosynthesis of eicosanoids.

机译:类花生酸的跨细胞生物合成。

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The metabolism of arachidonic acid into biologically active compounds involves the sequential activity of a number of enzymes, sometimes showing a unique expression profile in different cells. The main metabolic pathways, namely the cyclooxygenases and the 5-lipoxygenase, both generate chemically unstable intermediates: prostaglandin (PG) H(2) and leukotriene (LT) A(4), respectively. These are transformed by secondary enzymes into a variety of chemical structures known collectively as the lipid mediators. Although some cells express all the enzymes necessary for the production of biologically active compounds, it has been shown that eicosanoids are often the result of cell-cell interactions involving the transfer of biosynthetic intermediates, such as the chemically reactive PGH(2) and LTA(4), between cells. This process has been defined as the transcellular pathway of eicosanoid biosynthesis and requires both a donor cell to synthesize and release one component of the biosynthetic cascade and an accessory cell to take up that intermediate and process it into the final biologically active product. This review will summarize the evidence for transcellular biosynthetic events, occurring in isolated cell preparations, complex isolated organ systems, and in vivo, that result in the production of prostaglandins, leukotrienes, and lipoxins.
机译:花生四烯酸代谢成生物活性化合物涉及许多酶的顺序活性,有时在不同细胞中表现出独特的表达特征。主要的代谢途径,即环氧合酶和5-脂氧合酶,均会产生化学上不稳定的中间体:前列腺素(PG)H(2)和白三烯(LT)A(4)。这些被次级酶转化为多种化学结构,统称为脂质介体。尽管某些细胞表达产生生物活性化合物所需的所有酶,但已显示类花生酸通常是细胞间相互作用的结果,其中涉及生物合成中间体的转移,例如化学反应性PGH(2)和LTA( 4),细胞之间。该过程已被定义为类二十烷酸生物合成的跨细胞途径,需要供体细胞合成和释放生物合成级联的一个组分,还需要辅助细胞吸收该中间体并将其加工成最终的生物活性产物。这篇综述将总结在分离的细胞制剂,复杂的分离的器官系统以及体内发生的跨细胞生物合成事件的证据,这些事件导致前列腺素,白三烯和脂蛋白的产生。

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