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首页> 外文期刊>Prostaglandins, Leukotrienes, and Essential Fatty Acids >Delta-6-desaturase and delta-5-desaturase in human Hep G2 cells are both fatty acid interconversion rate limiting and are upregulated under essential fatty acid deficient conditions.
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Delta-6-desaturase and delta-5-desaturase in human Hep G2 cells are both fatty acid interconversion rate limiting and are upregulated under essential fatty acid deficient conditions.

机译:人Hep G2细胞中的Delta-6-去饱和酶和delta-5-去饱和酶都是脂肪酸互变速率的限制,并且在必需脂肪酸缺乏的条件下被上调。

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摘要

Essential fatty acids are interconverted by desaturases and elongases to eicosanoid precursors. In essential fatty acid deficiency (EFAD) an increased hepatic interconversion of linoleic acid (18:2) to arachidonic acid (20:4n-6) has been demonstrated in vivo. We now cultured Hep G2 cells under EFAD conditions. 20:3n-6 appeared in EFAD cells, but also in controls. After adding 14C-18:2 to the medium, interconversion products and their distribution in different lipids were studied by HPLC. When trace amounts 18:2 were incubated, 38% were converted by the EFAD cells after 21 h, vs 6% by controls. 20% was converted to 20:4 by EFAD cells vs 14% by controls. EFAD cells preferentially distributed more 18:2 and conversion products to neutral fats and to phosphatidyl ethanolamine, but less to cardiolipin than controls did, when incubated with trace amount 18:2, but not with 1 mM 18:2. A relative accumulation of radioactivity in 20:3 was observed. In conclusion; in EFAD Hep G2 cells delta-6- and delta-5-desaturase both were found to be upregulated and eicosanoid precursors were distributed more into phosphatidyl ethanolamine. Delta-5-desaturase had a rate limiting property as well as delta-6-desaturase.
机译:必需脂肪酸通过去饱和酶和延伸酶相互转化为类二十烷酸前体。在必需脂肪酸缺乏症(EFAD)中,已证明体内亚油酸(18:2)向花生四烯酸(20:4n-6)的肝相互转化增加。现在我们在EFAD条件下培养了Hep G2细胞。 20:3n-6出现在EFAD细胞中,也出现在对照中。向培养基中加入14C-18:2后,通过HPLC研究了相互转化产物及其在不同脂质中的分布。当以痕量18:2进行孵育时,21小时后EFAD细胞转化了38%,而对照则为6%。 EFAD细胞将20%的比例转换为20:4,而对照则为14%。当与痕量18:2孵育而不与1 mM 18:2孵育时,EFAD细胞优先向中性脂肪和磷脂酰乙醇胺分配更多的18:2和转化产物,但向心磷脂的分配少于对照组。观察到放射性相对积累为20:3。结论;在EFAD Hep G2细胞中,发现delta-6-和delta-5-desaturase均被上调,类花生酸前体更多地分布在磷脂酰乙醇胺中。 Delta-5-去饱和酶与Delta-6去饱和酶一样具有速率限制特性。

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