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Metabolism of Tween-Fatty Acid Esters by Cultured Soybean Cells 1: Kinetics of Incorporation into Lipids, Subsequent Turnover, and Associated Changes in Endogenous Fatty Acid Synthesis

机译:大豆细胞中吐温脂肪酸酯的代谢1:掺入脂质的动力学,随后的周转率以及内源脂肪酸合成的相关变化

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摘要

Uptake of Tween-fatty acid esters and incorporation of the fatty acids into lipids by soybean (Glycine max [L.] Merr.) suspension cultures was investigated, together with subsequent turnover of the incorporated fatty acids and associated changes in endogenous fatty acid synthesis. Tween uptake was saturable, and fatty acids were rapidly transferred from Tweens to all acylated lipids. Patterns of incorporation into glycerolipids were similar in cells treated with Tweens carrying [1-14C]-fatty acids and in cells treated with [1-14C]acetate, indicating that exogenous fatty acids were used for glycerolipid synthesis essentially as if they had been made by the cell. In Tween-treated cells neutral lipids (which include Tweens) initially accounted for the majority of lipid radioactivity. Radioactivity was then rapidly transferred to glycerolipids. A transient pool of free fatty acids accounting for up to 10% of lipid radioactivity was observed. This was consistent with the hypothesis that fatty acids are transferred from Tweens to lipids by deacylation of the Tweens, creating a pool of free fatty acids which are then used for lipid synthesis. Sterols were only slightly labeled in cells treated with Tweens, but accounted for nearly 50% of lipid radioactivity in cells treated with acetate. This suggested very little degradation and reutilization of the radioactive fatty acids in cells treated with Tweens. In cells treated with either [1-14C]acetate or Tween-[1-14C]-18:1, 70% of the initial fatty acid radioactivity remained in fatty acids after a 100 hour chase. By contrast, fatty acids not normally present disappeared more rapidly, suggesting differential treatment of such fatty acids compared with those normally present. Cells which had incorporated large amounts of exogenous fatty acids altered fatty acid synthesis in three distinct ways: (a) amounts of [1-14C]acetate incorporated into fatty acids were reduced; (b) cells incorporating exogenous unsaturated fatty acids increased the proportion of [1-14C]acetate partitioned into saturated fatty acids, while the converse was true of cells which had incorporated exogenous saturated fatty acids; (c) desaturation of 18:1 to 18:2 and 18:3 was reduced in cells which had incorporated unsaturated fatty acids. These results suggest that Tween-fatty acid esters will be useful for supplying fatty acids to cells for a variety of studies related to fatty acid or membrane metabolism.
机译:研究了大豆(Glycine max [L.] Merr。)悬浮培养物对吐温脂肪酸酯的吸收和脂肪酸向脂质中的掺入,以及掺入的脂肪酸的随后周转率和内源性脂肪酸合成的相关变化。吐温的吸收是可饱和的,脂肪酸从吐温迅速转移到所有酰化脂质上。在掺有[1-14C]-脂肪酸的Tweens处理的细胞和[1-14C]乙酸处理的细胞中,掺入甘油脂的模式相似,这表明外源脂肪酸基本上用于合成甘油脂由细胞。在吐温处理过的细胞中,中性脂质(包括吐温)最初占脂质放射性的大部分。然后将放射性迅速转移到甘油脂上。观察到短暂的游离脂肪酸库占脂质放射性的10%。这与以下假设相一致:脂肪酸通过吐温的脱酰基作用从吐温转移到脂质上,产生了一系列游离脂肪酸,然后将其用于脂质合成。在用Tweens处理的细胞中,甾醇仅稍作标记,但在用醋酸盐处理的细胞中占近50%的脂质放射性。这表明在用Tweens处理的细胞中,放射性脂肪酸的降解和再利用极少。在用[1-14C]乙酸盐或Tween- [1-14C] -18:1处理的细胞中,追赶100小时后,初始脂肪酸的70%仍保留在脂肪酸中。相反,通常不存在的脂肪酸消失得更快,表明与通常存在的那些脂肪酸区别对待。掺入大量外源脂肪酸的细胞以三种不同的方式改变了脂肪酸的合成:(a)减少掺入脂肪酸的[1-14C]乙酸酯的量; (b)掺有外源性不饱和脂肪酸的细胞增加了[1-14C]乙酸盐分配到饱和脂肪酸中的比例,而掺入有外源性饱和脂肪酸的细胞则相反。 (c)在掺入不饱和脂肪酸的细胞中降低了18∶1至18∶2和18∶3的去饱和度。这些结果表明,吐温-脂肪酸酯可用于为细胞提供脂肪酸,用于与脂肪酸或膜代谢有关的各种研究。

著录项

  • 作者

    Terzaghi, William B.;

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  • 年度 1986
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  • 原文格式 PDF
  • 正文语种 en
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