Nordlund J R, Schmidt C F, Thompson T E
Biochemistry. 1981 Oct 27;20(22):6415-20. doi: 10.1021/bi00525a020.
The transbilayer distribution of the phospholipids in small unilamellar vesicles comprised of egg phosphatidylglycerol (PG) and egg phosphatidylcholine (PC) was ascertained by 31P NMR. These vesicles, containing 10-75 mol % PG, were formed by sonication (pH 7.6) and fractionated by centrifugation. Data from spectra accumulated in the presence and absence of a paramagnetic shift reagent, Mn2+, indicated that the phospholipids are randomly arranged across the bilayer. The absence of compositional asymmetry, which contradicts earlier reports, is also exhibited by small unilamellar vesicles (50 mol % PG) prepared by the rapid ethanol injection method. Control experiments showed that Mn2+ did not induce fusion, permeate the vesicles, or cause the phospholipids to migrate across the bilayer. It has been proposed that the transbilayer distribution of charged phospholipids in membranes is a consequence of the different surface charge densities on the opposing sides of the membrane. Our results suggest that it is the difference in the effective polar headgroup volumes of the components rather than the net charge of one component that determines the packing constraints for mixtures of phospholipids with the same acyl chains, at least in highly curved bilayers.
通过31P核磁共振确定了由鸡蛋磷脂酰甘油(PG)和鸡蛋磷脂酰胆碱(PC)组成的小单层囊泡中磷脂的跨膜分布。这些含有10 - 75摩尔% PG的囊泡通过超声处理(pH 7.6)形成,并通过离心分级分离。在存在和顺磁性位移试剂Mn2+的情况下积累的光谱数据表明,磷脂在双层中随机排列。快速乙醇注入法制备的小单层囊泡(50摩尔% PG)也表现出不存在组成不对称性,这与早期报告相矛盾。对照实验表明,Mn2+不会诱导融合、穿透囊泡或导致磷脂跨双层迁移。有人提出,膜中带电磷脂的跨膜分布是膜相对两侧不同表面电荷密度的结果。我们的结果表明,至少在高度弯曲的双层中,决定具有相同酰基链的磷脂混合物堆积限制的是各组分有效极性头基团体积的差异,而不是一种组分的净电荷。