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巨噬细胞样RAW 264.7细胞中磷脂酰甘油转化为双(单酰甘油)磷酸酯过程中的甘油重排

Glycerol reorientation during the conversion of phosphatidylglycerol to bis(monoacylglycerol)phosphate in macrophage-like RAW 264.7 cells.

作者信息

Thornburg T, Miller C, Thuren T, King L, Waite M

机构信息

Department of Biochemistry, Bowman Gray School of Medicine, Wake Forest University, Winston-Salem, North Carolina 27103.

出版信息

J Biol Chem. 1991 Apr 15;266(11):6834-40.

PMID:2016299
Abstract

Bis(monoacylglycero)phosphate (BMP) has the unique stereoconfiguration of 3-acyl-sn-glycero-1-phosphoryl-1'-sn-[3'-acylglycerol] (Brotherus, J., Renkonen, O., Herrmann, J., and Fischer, W. (1974) Chem. Phys. Lipids 13, 178-182) which differs from other known mammalian phospholipids that have the sn-glycero-3-phosphoryl configuration. This stereochemistry may contribute to its physiologic function. Here we describe studies using the macrophage-like cell line RAW 264.7 designed to determined how this unique stereoconfiguration occurs. These studies show that the stereoconfiguration of BMP produced from exogenous phosphatidylglycerol (PG) by RAW 264.7 cells has the expected stereoconfiguration of 3-acyl-sn-glycero-1-phosphoryl-1'-sn-[3'-acylglycerol]. Experiments using diacyl-sn-[2-3H]glycero-3-phosphoryl-sn-1'-[2-3H]glycerol demonstrate that this unique stereoconfiguration is not produced due to an oxidation/reduction mechanism involving the sn-2-glycerol carbon. When dioleoyl-sn-[1-14C]glycero-3-phosphoryl-rac-glycerol was converted to 14C-labeled BMP, the 14C label was found esterified to the phosphate moiety. These results suggest that a stereospecific enzyme is capable of reorienting the radiolabeled glycerol backbone of this PG substrate, effectively changing the stereochemistry of the lipid. We also show that this enzyme is stereoselective with regard to the base glycerol moiety of the substrate PG used. Finally, we propose a new pathway for the synthesis of BMP from PG.

摘要

双(单酰甘油)磷酸酯(BMP)具有独特的立体构型,即3-酰基-sn-甘油-1-磷酸-1'-sn-[3'-酰基甘油](布罗瑟斯,J.,伦科宁,O.,赫尔曼,J.,以及菲舍尔,W.(1974年)《化学与物理脂质》13卷,第178 - 182页),这与其他已知的具有sn-甘油-3-磷酸构型的哺乳动物磷脂不同。这种立体化学结构可能有助于其生理功能。在此,我们描述了利用巨噬细胞样细胞系RAW 264.7进行的研究,旨在确定这种独特的立体构型是如何形成的。这些研究表明,RAW 264.7细胞由外源性磷脂酰甘油(PG)产生的BMP的立体构型具有预期的3-酰基-sn-甘油-1-磷酸-1'-sn-[3'-酰基甘油]的立体构型。使用二酰基-sn-[2-³H]甘油-3-磷酸-sn-1'-[2-³H]甘油的实验表明,这种独特的立体构型不是由于涉及sn-2-甘油碳的氧化/还原机制产生的。当二油酰基-sn-[1-¹⁴C]甘油-3-磷酸-消旋甘油转化为¹⁴C标记的BMP时,发现¹⁴C标记酯化到了磷酸部分。这些结果表明,一种立体特异性酶能够重新定向这种PG底物的放射性标记甘油主链,有效地改变脂质的立体化学结构。我们还表明,这种酶对所用底物PG的碱基甘油部分具有立体选择性。最后,我们提出了一条从PG合成BMP的新途径。

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