Department of Nutritional Sciences, Faculty of Medicine, University of Toronto, Toronto, ON, Canada.
J Lipid Res. 2013 Sep;54(9):2410-22. doi: 10.1194/jlr.M038505. Epub 2013 Jul 8.
Brain eicosapentaenoic acid (EPA) levels are 250- to 300-fold lower than docosahexaenoic acid (DHA), at least partly, because EPA is rapidly β-oxidized and lost from brain phospholipids. Therefore, we examined if β-oxidation was necessary for maintaining low EPA levels by inhibiting β-oxidation with methyl palmoxirate (MEP). Furthermore, because other metabolic differences between DHA and EPA may also contribute to their vastly different levels, this study aimed to quantify the incorporation and turnover of DHA and EPA into brain phospholipids. Fifteen-week-old rats were subjected to vehicle or MEP prior to a 5 min intravenous infusion of (14)C-palmitate, (14)C-DHA, or (14)C-EPA. MEP reduced the radioactivity of brain aqueous fractions for (14)C-palmitate-, (14)C-EPA-, and (14)C-DHA-infused rats by 74, 54, and 23%, respectively; while it increased the net rate of incorporation of plasma unesterified palmitate into choline glycerophospholipids and phosphatidylinositol and EPA into ethanolamine glycerophospholipids and phosphatidylserine. MEP also increased the synthesis of n-3 docosapentaenoic acid (n-3 DPA) from EPA. Moreover, the recycling of EPA into brain phospholipids was 154-fold lower than DHA. Therefore, the low levels of EPA in the brain are maintained by multiple redundant pathways including β-oxidation, decreased incorporation from plasma unesterified FA pool, elongation/desaturation to n-3 DPA, and lower recycling within brain phospholipids.
脑二十碳五烯酸 (EPA) 的水平比二十二碳六烯酸 (DHA) 低 250-300 倍,至少部分原因是 EPA 被快速β氧化并从脑磷脂中丢失。因此,我们通过用甲基棕榈酸酯 (MEP) 抑制β氧化来研究β氧化是否对于维持低 EPA 水平是必需的。此外,由于 DHA 和 EPA 之间的其他代谢差异也可能导致它们的水平差异很大,因此本研究旨在定量测定 DHA 和 EPA 掺入和周转进入脑磷脂。将 15 周龄大鼠用载体或 MEP 预处理,然后进行 5 分钟的静脉内 (14)C-棕榈酸盐、(14)C-DHA 或 (14)C-EPA 输注。MEP 分别降低了脑水相部分的放射性 (14)C-棕榈酸盐、(14)C-EPA 和 (14)C-DHA 输注大鼠的 74%、54%和 23%;同时,它增加了血浆未酯化棕榈酸向胆碱甘油磷脂和磷脂酰肌醇以及 EPA 向乙醇胺甘油磷脂和磷脂酰丝氨酸的净掺入率。MEP 还增加了 EPA 向 n-3 二十二碳五烯酸 (n-3 DPA) 的合成。此外,EPA 再掺入脑磷脂的循环速度比 DHA 低 154 倍。因此,脑内 EPA 水平低是通过多种冗余途径维持的,包括β氧化、减少来自血浆未酯化 FA 池的掺入、向 n-3 DPA 的延伸/去饱和以及脑磷脂内的低循环。