Bouvier Jérôme, Zemski Berry Karin A, Hullin-Matsuda Françoise, Makino Asami, Michaud Sabine, Geloën Alain, Murphy Robert C, Kobayashi Toshihide, Lagarde Michel, Delton-Vandenbroucke Isabelle
Université de Lyon, UMR 870 Inserm, Insa-Lyon, UMR 1135 Inra, Univ Lyon 1, Hospices Civils de Lyon, IMBL, 69621, Villeurbanne, France.
J Lipid Res. 2009 Feb;50(2):243-55. doi: 10.1194/jlr.M800300-JLR200. Epub 2008 Sep 22.
Bis(monoacylglycero)phosphate (BMP) is a unique phospholipid (PL) preferentially found in late endosomal membranes, where it forms specialized lipid domains. Recently, using cultured macrophages treated with anti-BMP antibody, we showed that BMP-rich domains are involved in cholesterol homeostasis. We had previously stressed the high propensity of BMP to accumulate docosahexaenoic acid (DHA), compared with other PUFAs. Because phosphatidylglycerol (PG) was reported as a precursor for BMP synthesis in RAW macrophages, we examined the effects of PG supplementation on both FA composition and amount of BMP in this cell line. Supplementation with dioleoyl-PG (18:1/18:1-PG) induced BMP accumulation, together with an increase of oleate proportion. Supplementation with high concentrations of didocosahexaenoyl-PG (22:6/22:6-PG) led to a marked enrichment of DHA in BMP, resulting in the formation of diDHA molecular species. However, the amount of BMP was selectively decreased. Similar effects were observed after supplementation with high concentrations of nonesterified DHA. Addition of vitamin E prevented the decrease of BMP and further increased its DHA content. Supplementation with 22:6/22:6-PG promoted BMP accumulation with an enhanced proportion of 22:6/22:6-BMP. DHA-rich BMP was significantly degraded after cell exposure to oxidant conditions, in contrast to oleic acid-rich BMP, which was not affected. Using a cell-free system, we showed that 22:6/22:6-BMP is highly oxidizable and partially protects cholesterol oxidation, compared with 18:1/18:1-BMP. Our data suggest that high DHA content in BMP led to specific degradation of this PL, possibly through the diDHA molecular species, which is very prone to peroxidation and, as such, a potential antioxidant in its immediate vicinity.
双(单酰甘油)磷酸酯(BMP)是一种独特的磷脂(PL),优先存在于晚期内体膜中,在那里它形成特殊的脂质结构域。最近,我们使用用抗BMP抗体处理的培养巨噬细胞表明,富含BMP的结构域参与胆固醇稳态。我们之前曾强调,与其他多不饱和脂肪酸相比,BMP具有很高的积累二十二碳六烯酸(DHA)的倾向。因为磷脂酰甘油(PG)被报道为RAW巨噬细胞中BMP合成的前体,我们研究了PG补充对该细胞系中脂肪酸组成和BMP含量的影响。补充二油酰-PG(18:1/18:1-PG)诱导BMP积累,同时油酸比例增加。补充高浓度的二十二碳六烯酰-PG(22:6/22:6-PG)导致BMP中DHA显著富集,形成二DHA分子种类。然而,BMP的量选择性降低。补充高浓度的非酯化DHA后也观察到类似的效果。添加维生素E可防止BMP减少并进一步增加其DHA含量。补充22:6/22:6-PG促进BMP积累,同时22:6/22:6-BMP的比例增加。与富含油酸的BMP不受影响相反,细胞暴露于氧化条件后,富含DHA的BMP显著降解。使用无细胞系统,我们表明与18:1/18:1-BMP相比,22:6/22:6-BMP具有高度氧化性并部分保护胆固醇氧化。我们的数据表明,BMP中高含量的DHA导致这种磷脂的特异性降解,可能是通过非常容易发生过氧化的二DHA分子种类,因此在其紧邻区域是一种潜在的抗氧化剂。