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球形红假单胞菌无细胞提取物介导的膜间磷脂转移

Intermembrane phospholipid transfer mediated by cell-free extracts of Rhodopseudomonas sphaeroides.

作者信息

Cohen L K, Lueking D R, Kaplan S

出版信息

J Biol Chem. 1979 Feb 10;254(3):721-8.

PMID:310818
Abstract

The transfer of phospholipids between two membrane substrates catalyzed by a soluble protein fraction from Rhodopseudomonas sphaeroides has been demonstrated. The assay employs purified intracytoplasmic membrane (ICM) vesicles derived from cells of R. sphaeroides grown on [3H]acetate as the phospholipid donor substrate and phosphatidylcholine (70%)/phosphatidylethanolamine (30%) unilamellar liposomes containing [14C]triolein, a nontransferable marker, as the acceptor substrate for transferred phospholipids. Incubation of these two membrane substrates with a 40 to 80% (NH4)2SO4 protein fraction from R. sphaeroides results in the transfer of tritium-labeled ICM phospholipids to the acceptor membrane substrate. Upon completion of the incubation period, the donor ICM vesicles are quantitatively separated from the acceptor liposomes by precipitation with antibody prepared against whole, purified ICM vesicles. Phospholipid transfer is linear with respect to time and protein concentration, is inhibited by trypsin and heat, and shows an absolute dependence upon the presence of acceptor liposomes and the 40 to 80% (NH4)2SO4 protein fraction. Control experiments indicate that no fusion of the donor and acceptor membrane occurs during the incubation period and that, following prolonged incubation there is no detectable degradation of the labeled lipid components. Preliminary data on the phospholipid specificity of the transfer reaction is also presented.

摘要

已经证明,球形红假单胞菌的可溶性蛋白组分可催化磷脂在两种膜底物之间的转移。该测定采用从在[3H]乙酸盐上生长的球形红假单胞菌细胞中纯化得到的胞内膜(ICM)囊泡作为磷脂供体底物,以及含有[14C]三油酸甘油酯(一种不可转移的标记物)的磷脂酰胆碱(70%)/磷脂酰乙醇胺(30%)单层脂质体作为转移磷脂的受体底物。将这两种膜底物与球形红假单胞菌的40%至80%硫酸铵蛋白组分一起孵育,会导致氚标记的ICM磷脂转移到受体膜底物上。孵育期结束后,通过用针对完整纯化的ICM囊泡制备的抗体沉淀,将供体ICM囊泡与受体脂质体定量分离。磷脂转移在时间和蛋白质浓度方面呈线性关系,受胰蛋白酶和加热抑制,并且绝对依赖于受体脂质体和40%至80%硫酸铵蛋白组分的存在。对照实验表明,孵育期间供体和受体膜不会发生融合,并且长时间孵育后,标记的脂质成分没有可检测到的降解。还给出了转移反应磷脂特异性的初步数据。

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