Hancock A J, Stokes M H, Sable H Z
J Lipid Res. 1977 Jan;18(1):81-92.
A new series of phosphatidic acid analogs has been synthesized in which the glycerol moiety of diacylglycerophosphoric acid is replaced by each of the three isomeric cyclopentane-1,2,3-triols (1,3/2, DL-1,2/3, and 1,2,3/0). Of the seven possible configurational and positional phosphatidic acid analogs of this series, five isomers have been obtained and characterized by spectroscopic methods and microanalysis. Four of the five isomers are 1-(or 3-)phosphoryl derivatives, while the fifth is a 2-phosphate. The analogs were prepared in configurationally pure form by unequivocal synthetic procedures involving selectively blocked intermediates: acyl migration was avoided by the use of mild deblocking procedures. The anhydrous lipid products, all of which are dipalmitoyl esters, are solids indefinitely stable at room temperature in the free acid or potassium salt form; they have chromographic mobility and melting points similar to dipalmitoyl glycerophosphoric acid the dipotassium salts bind water of hydration tenaciously, remaining hydrated after drying in vacuo at 100 degrees C. NMR spectra of dimethyl esters of some of the analogs show nonequivalence of the two methyl groups, consistent with the diastereotopic nature of those groups. In addition to their intrinsic interest as conformationally restricted acidic lipids, the analogs are now available as starting materials for the synthesis of the more complex acidic and amphoteric lipids required for our exploitation of these cyclopentanoid analogs as unique probes for the study of lipid-lipid and protein-lipid interactions.
已经合成了一系列新的磷脂酸类似物,其中二酰基甘油磷酸的甘油部分被三种异构的环戊烷 - 1,2,3 - 三醇(1,3/2、DL - 1,2/3和1,2,3/0)中的每一种取代。在该系列七种可能的构型和位置的磷脂酸类似物中,已获得五种异构体,并通过光谱方法和微量分析进行了表征。这五种异构体中的四种是1 - (或3 - )磷酰基衍生物,而第五种是2 - 磷酸酯。通过涉及选择性保护中间体的明确合成程序,以构型纯的形式制备了这些类似物:通过使用温和的去保护程序避免了酰基迁移。无水脂质产物均为二棕榈酰酯,在室温下以游离酸或钾盐形式无限期稳定;它们具有与二棕榈酰甘油磷酸相似的色谱迁移率和熔点,其二钾盐能牢固地结合水合水,在100℃真空干燥后仍保持水合状态。一些类似物的二甲酯的核磁共振谱显示两个甲基不等价,这与这些基团的非对映异位性质一致。除了作为构象受限的酸性脂质本身具有研究意义外,这些类似物现在还可作为合成更复杂的酸性和两性脂质的起始原料,用于我们将这些环戊烷类似物作为研究脂质 - 脂质和蛋白质 - 脂质相互作用的独特探针加以利用。