Plückthun A, DeBony J, Fanni T, Dennis E A
Biochim Biophys Acta. 1986 Mar 27;856(1):144-54. doi: 10.1016/0005-2736(86)90021-0.
Mono- and dimethylated derivatives constitute important intermediates in the conversion of phosphatidylethanolamine (PE) to phosphatidylcholine (PC) in eucaryote membranes. 1H-NMR techniques were utilized to examine the conformation of the region of the fatty acyl chains that is close to the polar group in the series of alpha-phospholipids: PE, N-methyl-PE, N,N-dimethyl-PE, and PC. The same series of polar groups, but on phospholipid containing sn-1 and/or sn-3 fatty acyl chains (beta-phospholipids) were also examined. All of the phospholipids were in the form of small sonicated vesicles which are widely utilized as membrane models. The alpha-methylene group of the sn-1 and sn-2 fatty acyl chains of the alpha-phospholipids give rise to separate signals due to the non-equivalency of these chains with respect to the glycerol phosphate backbone on all alpha-phospholipids tested. Additionally, differences in the environment of the PC molecules as well as N-methyl-PE, and N,N-dimethyl-PE, but not PE itself on the inside and outside of the vesicles are reflected in the chemical shift of the alpha-methylene protons. On the other hand, all of the beta-phospholipids (including beta-PE) were found to reflect the inside/outside packing differences in their alpha-methylene groups. The bilayer packing does not induce any nonequivalence in the chemically equivalent acyl chains. In mixed micelles with detergents, beta-phospholipids showed one alpha-CH2 signal for all phospholipids. These results are consistent with a common conformational arrangement for the fatty acyl chains in all alpha-phospholipids that have been investigated no matter what aggregated form. The conformational arrangement in the beta-phospholipids is different, but again is similar for all of the compounds tested in various aggregated forms.
单甲基化和二甲基化衍生物是真核细胞膜中磷脂酰乙醇胺(PE)转化为磷脂酰胆碱(PC)过程中的重要中间体。利用1H-NMR技术研究了一系列α-磷脂中靠近极性基团的脂肪酰链区域的构象:PE、N-甲基-PE、N,N-二甲基-PE和PC。还研究了相同系列的极性基团,但存在于含有sn-1和/或sn-3脂肪酰链的磷脂(β-磷脂)上。所有磷脂均为小的超声处理囊泡形式,广泛用作膜模型。在所测试的所有α-磷脂中,由于sn-1和sn-2脂肪酰链的α-亚甲基相对于甘油磷酸主链不等价,因此产生了单独的信号。此外,囊泡内外的PC分子以及N-甲基-PE和N,N-二甲基-PE(但不包括PE本身)环境差异反映在α-亚甲基质子的化学位移上。另一方面,发现所有β-磷脂(包括β-PE)在其α-亚甲基基团中反映了内外堆积差异。双层堆积不会在化学等价的酰基链中引起任何不等价。在与去污剂的混合胶束中,所有磷脂的β-磷脂均显示一个α-CH2信号。这些结果与所研究的所有α-磷脂中脂肪酰链的常见构象排列一致,无论其聚集形式如何。β-磷脂中的构象排列不同,但对于以各种聚集形式测试的所有化合物而言再次相似。