Exogenous tetracosahexaenoic acid modifies the fatty acid composition of human primary T lymphocytes and Jurkat T cell leukemia cells contingent on cell type

IF 1.8 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lipids Pub Date : 2023-05-13 DOI:10.1002/lipd.12372
Nicola A. Irvine, Annette L. West, Johanna Von Gerichten, Elizabeth A. Miles, Karen A. Lillycrop, Philip C. Calder, Barbara A. Fielding, Graham C. Burdge
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Abstract

Tetracosahexaenoic acid (24:6ω-3) is an intermediate in the conversion of 18:3ω-3 to 22:6ω-3 in mammals. There is limited information about whether cells can assimilate and metabolize exogenous 24:6ω-3. This study compared the effect of incubation with 24:6ω-3 on the fatty acid composition of two related cell types, primary CD3+ T lymphocytes and Jurkat T cell leukemia, which differ in the integrity of the polyunsaturated fatty acid (PUFA) biosynthesis pathway. 24:6ω-3 was only detected in either cell type when cells were incubated with 24:6ω-3. Incubation with 24:6ω-3 induced similar increments in the amount of 22:6ω-3 in both cell types and modified the homeoviscous adaptations fatty acid composition induced by activation of T lymphocytes. The effect of incubation with 18:3ω-3 compared to 24:6ω-3 on the increment in 22:6ω-3 was tested in Jurkat cells because primary T cells cannot convert 18:3ω-3 to 22:6ω-3. The increment in the 22:6ω-3 content of Jurkat cells incubated with 24:6ω-3 was 19.5-fold greater than that of cells incubated with 18:3ω-3. Acyl-coA oxidase siRNA knockdown decreased the amount of 22:6ω-3 and increased the amount of 24:6ω-3 in Jurkat cells. These findings show exogenous 24:6ω-3 can be incorporated into primary human T lymphocytes and Jurkat cells and induces changes in fatty acid composition consistent with its conversion to 22:6ω-3 via a mechanism involving peroxisomal β-oxidation that is regulated independently from the integrity of the upstream PUFA synthesis pathway. One further implication is that consuming 24:6ω-3 may be an effective alternative means of achieving health benefits attributed to 20:5ω-3 and 22:6ω-3.

Abstract Image

外源性四碳六烯酸根据细胞类型改变人原代T淋巴细胞和Jurkat T细胞白血病细胞的脂肪酸组成
四碳六烯酸(24:6ω-3)是哺乳动物体内18:3ω-3转化为22:6ω-3的中间产物。关于细胞是否能够吸收和代谢外源的24:6ω-3的信息有限。本研究比较了24:6ω-3孵育对两种相关细胞类型(原发性CD3+ T淋巴细胞和Jurkat T细胞白血病)脂肪酸组成的影响,这两种细胞类型在多不饱和脂肪酸(PUFA)生物合成途径的完整性上存在差异。用24:6ω-3孵育细胞时,仅在两种细胞中检测到24:6ω-3。用24:6ω-3孵育后,两种细胞类型中22:6ω-3含量的增加相似,并改变了T淋巴细胞活化诱导的自粘适应性脂肪酸组成。由于原代T细胞不能将18:3ω-3转化为22:6ω-3,因此我们在Jurkat细胞中测试了18:3ω-3与24:6ω-3孵育对22:6ω-3增量的影响。用24:6ω-3培养Jurkat细胞,其22:6ω-3含量比用18:3ω-3培养Jurkat细胞增加19.5倍。酰基辅酶a氧化酶siRNA敲低可降低Jurkat细胞中22:6ω-3的含量,增加24:6ω-3的含量。这些发现表明,外源性的24:6ω-3可以被纳入人原代T淋巴细胞和Jurkat细胞,并通过一种与过氧化物酶体β-氧化有关的机制诱导脂肪酸组成的变化,这种机制与上游PUFA合成途径的完整性无关。一个进一步的暗示是,食用24:6ω-3可能是获得20:5ω-3和22:6ω-3所带来的健康益处的有效替代方法。
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来源期刊
Lipids
Lipids 生物-生化与分子生物学
CiteScore
4.20
自引率
5.30%
发文量
33
审稿时长
4-8 weeks
期刊介绍: Lipids is a journal of the American Oil Chemists'' Society (AOCS) that focuses on publishing high-quality peer-reviewed papers and invited reviews in the general area of lipid research, including chemistry, biochemistry, clinical nutrition, and metabolism. In addition, Lipids publishes papers establishing novel methods for addressing research questions in the field of lipid research.
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