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Improved Mitochondrial Function with Diet-Induced Increase in Either Docosahexaenoic Acid or Arachidonic Acid in Membrane Phospholipids

机译:饮食诱导的膜磷脂中二十二碳六烯酸或花生四烯酸饮食增加,从而改善线粒体功能

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摘要

Mitochondria can depolarize and trigger cell death through the opening of the mitochondrial permeability transition pore (MPTP). We recently showed that an increase in the long chain n3 polyunsaturated fatty acids (PUFA) docosahexaenoic acid (DHA; 22:6n3) and depletion of the n6 PUFA arachidonic acid (ARA; 20:4n6) in mitochondrial membranes is associated with a greater Ca2+ load required to induce MPTP opening. Here we manipulated mitochondrial phospholipid composition by supplementing the diet with DHA, ARA or combined DHA+ARA in rats for 10 weeks. There were no effects on cardiac function, or respiration of isolated mitochondria. Analysis of mitochondrial phospholipids showed DHA supplementation increased DHA and displaced ARA in mitochondrial membranes, while supplementation with ARA or DHA+ARA increased ARA and depleted linoleic acid (18:2n6). Phospholipid analysis revealed a similar pattern, particularly in cardiolipin. Tetralinoleoyl cardiolipin was depleted by 80% with ARA or DHA+ARA supplementation, with linoleic acid side chains replaced by ARA. Both the DHA and ARA groups had delayed Ca2+-induced MPTP opening, but the DHA+ARA group was similar to the control diet. In conclusion, alterations in mitochondria membrane phospholipid fatty acid composition caused by dietary DHA or ARA was associated with a greater cumulative Ca2+ load required to induced MPTP opening. Further, high levels of tetralinoleoyl cardiolipin were not essential for normal mitochondrial function if replaced with very-long chain n3 or n6 PUFAs.
机译:线粒体可以通过打开线粒体通透性转换孔(MPTP)来去极化并触发细胞死亡。我们最近表明,长链n3多不饱和脂肪酸(PUFA)二十二碳六烯酸(DHA; 22:6n3)的增加和线粒体膜中n6 PUFA花生四烯酸(ARA; 20:4n6)的消耗与更大的Ca相关导致MPTP打开所需的 2 + 负载。在这里,我们通过在大鼠中饮食中补充DHA,ARA或DHA + ARA组合10周来控制线粒体磷脂成分。对心脏功能或孤立的线粒体的呼吸没有影响。线粒体磷脂分析显示,DHA补充增加了DHA并增加了线粒体膜中的ARA,而ARA或DHA + ARA补充则增加了ARA和枯竭的亚油酸(18:2n6)。磷脂分析显示出相似的模式,尤其是在心磷脂中。补充ARA或DHA + ARA后,四氢萘氧基心磷脂减少了80%,亚油酸侧链被ARA取代。 DHA和ARA组均延迟了Ca 2 + 诱导的MPTP开放,但DHA + ARA组与对照组饮食相似。总之,饮食DHA或ARA引起的线粒体膜磷脂脂肪酸组成的变化与诱导MPTP开放所需的更大的Ca 2 + 累积负荷有关。此外,如果用非常长的链n3或n6 PUFA代替,高水平的四亚油酰基心磷脂对于正常的线粒体功能不是必需的。

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