Herbette L, Blasie J K, Defoor P, Fleischer S, Bick R J, Van Winkle W B, Tate C A, Entman M L
Arch Biochem Biophys. 1984 Oct;234(1):235-42. doi: 10.1016/0003-9861(84)90345-x.
The total phospholipid content and distribution of phospholipid species between the outer and inner monolayers of the isolated sarcoplasmic reticulum membrane was measured by phospholipase A2 activities and neutron diffraction. Phospholipase measurements showed that specific phospholipid species were asymmetric in their distribution between the outer and inner monolayers of the sarcoplasmic reticulum lipid bilayer; phosphatidylcholine (PC) was distributed 48/52 +/- 2% between the outer and inner monolayer of the sarcoplasmic reticulum bilayer, 69% of the phosphatidyl-ethanolamine (PE) resided mainly in the outer monolayer of the bilayer, 85% of the phosphatidylserine (PS) and 88% of the phosphatidylinositol (PI) were localized predominantly in the inner monolayer. The total phospholipid distribution determined by these measurements was 48/52 +/- 2% for the outer/inner monolayer of the sarcoplasmic reticulum lipid bilayer. Sarcoplasmic reticulum phospholipids were biosynthetically deuterated and exchanged into isolated vesicles with both a specific lecithin and a general exchange protein. Neutron diffraction measurements directly provided lipid distribution profiles for both PC and the total lipid content in the intact sarcoplasmic reticulum membrane. The outer/inner monolayer distribution for PC was 47/53 +/- 1%, in agreement with phospholipase measurements, while that for the total lipid was 46/54 +/- 1%, similar to the phospholipase measurements. These neutron diffraction results regarding the sarcoplasmic reticulum membrane bilayer were used in model calculations for decomposing the electron-density profile structure (10 A resolution) of isolated sarcoplasmic reticulum previously determined by X-ray diffraction into structures for the separate membrane components. These structure studies showed that the protein profile structure within the membrane lipid bilayer was asymmetric, complementary to the asymmetric lipid structure. Thus, the total phospholipid asymmetry obtained by two independent methods was small but consistent with a complementary asymmetric protein structure, and may be related to the highly vectorial functional properties of the calcium pump ATPase protein in the sarcoplasmic reticulum membrane.
通过磷脂酶A2活性和中子衍射法测量了分离的肌质网膜中外层和内层单分子层之间的总磷脂含量以及磷脂种类的分布。磷脂酶测量结果表明,特定的磷脂种类在肌质网脂质双层的外层和内层单分子层之间的分布是不对称的;磷脂酰胆碱(PC)在肌质网双层的外层和内层单分子层之间的分布为48/52±2%,69%的磷脂酰乙醇胺(PE)主要存在于双层的外层单分子层中,85%的磷脂酰丝氨酸(PS)和88%的磷脂酰肌醇(PI)主要位于内层单分子层。通过这些测量确定的肌质网脂质双层外层/内层单分子层的总磷脂分布为48/52±2%。肌质网磷脂经生物合成氘代后,与特定的卵磷脂和一种通用交换蛋白一起交换到分离的囊泡中。中子衍射测量直接提供了完整肌质网膜中PC和总脂质含量的脂质分布图谱。PC的外层/内层单分子层分布为47/53±1%,与磷脂酶测量结果一致,而总脂质的分布为46/54±1%,与磷脂酶测量结果相似。这些关于肌质网膜双层的中子衍射结果被用于模型计算,以将先前通过X射线衍射确定的分离肌质网的电子密度轮廓结构(10埃分辨率)分解为单独膜成分的结构。这些结构研究表明,膜脂质双层内的蛋白质轮廓结构是不对称的,与不对称的脂质结构互补。因此,通过两种独立方法获得的总磷脂不对称性较小,但与互补的不对称蛋白质结构一致,并且可能与肌质网膜中钙泵ATP酶蛋白的高度矢量功能特性有关。