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Polyunsaturated fatty acid elongation and desaturation in activated human T-cells: ELOVL5 is the key elongase

机译:活化的人T细胞中的多不饱和脂肪酸延伸和去饱和:ELOVL5是关键的延伸酶

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摘要

PUFAs are important constituents of membrane glycerophospholipids. However, changes in the capacities to incorporate and metabolize PUFAs when cells enter the cell cycle have not been thoroughly studied. In this study, differences in the incorporation and metabolism of exogenous PUFAs in resting and proliferating primary human T-cells and in the Jurkat cell line were measured. Overall, proliferating T-cells and Jurkat cells had a greater capacity to incorporate and elongate exogenous 18- and 20-carbon PUFAs compared with resting T-cells. Proliferating T-cells and Jurkat cells also showed a greater capacity to desaturate 18-carbon PUFA substrates. Consistent with these observations, a significant increase in the expression of fatty acid desaturase (FADS) 1, FADS2, and elongation of very long chain fatty acids protein (ELOVL) 5 was measured in proliferating T-cells compared with resting T-cells. No quantifiable ELOVL2 was measured. Knockdown of ELOVL5 in T-cells and Jurkat cells significantly affected cellular monounsaturated and PUFA profiles and strongly impaired the elongation of 18- and 20-carbon PUFAs. In conclusion, the induction of proliferation in human T-cells is associated with a significant increase in the capacity to take up and metabolize exogenous PUFAs, and ELOVL5 is responsible for the elongation of 18- and 20-carbon PUFAs in these cells.
机译:PUFA是膜甘油磷脂的重要组成部分。但是,尚未彻底研究当细胞进入细胞周期时掺入和代谢PUFA的能力的变化。在这项研究中,测量了静止和增殖的原代人T细胞和Jurkat细胞系中外源PUFA掺入和代谢的差异。总体而言,与静止的T细胞相比,增殖性T细胞和Jurkat细胞具有更大的掺入和拉长18碳和20碳外源PUFA的能力。增殖性T细胞和Jurkat细胞还显示出更高的使18碳PUFA底物去饱和的能力。与这些观察结果一致,与静止的T细胞相比,在增殖的T细胞中测定了脂肪酸去饱和酶(FADS)1,FADS2的表达和非常长链脂肪酸蛋白(ELOVL)5的延长。未测量可定量的ELOVL2。在T细胞和Jurkat细胞中敲除ELOVL5会显着影响细胞单不饱和和PUFA谱,并严重损害18碳和20碳PUFA的延伸。总之,诱导人类T细胞增殖与摄取和代谢外源PUFA的能力显着增加有关,而ELOVL5负责这些细胞中18和20碳PUFA的延长。

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