Higgins J A
Biochim Biophys Acta. 1979 Nov 16;558(1):48-57. doi: 10.1016/0005-2736(79)90314-6.
[14C]Choline was incorporated into microsomal membranes in vivo, and from CDP-[14C]choline in vitro, and the site of incorporation determined by hydrolysis of the outer leaflet of the membrane bilayer using phospholipase C from Clostridium welchii. Labelled phosphatidylcholine was found to be concentrated in the outer leaflet of the membrane bilayer with a specific activity approximately three times that of the inner leaflet. During incorporation of CDP-choline and treatment with phospholipase C the vesicles retained labelled-protein contents indicating that they remained intact. When the microsomes were opened with taurocholate after incorporation of [14C]choline in vivo, the labelled phosphatidylcholine behaved as a single pool. Selective hydrolysis of labelled phosphatidylcholine in intact vesicles is not, therefore, a consequence of specificity of phospholipase C. These results indicate that the phosphatidylcholine of the outer leaflet of the microsomal membrane bilayer is preferentially labelled by the choline-phosphotransferase pathway and that this pool of phospholipid does not equilibrate with that of the inner leaflet.
[14C]胆碱在体内被掺入微粒体膜中,在体外则从CDP-[14C]胆碱掺入,掺入位点通过使用韦氏梭菌的磷脂酶C水解膜双层的外小叶来确定。发现标记的磷脂酰胆碱集中在膜双层的外小叶中,其比活性约为内小叶的三倍。在掺入CDP-胆碱和用磷脂酶C处理期间,囊泡保留了标记的蛋白质内容物,表明它们保持完整。当在体内掺入[14C]胆碱后用牛磺胆酸盐打开微粒体时,标记的磷脂酰胆碱表现为单一池。因此,完整囊泡中标记的磷脂酰胆碱的选择性水解不是磷脂酶C特异性的结果。这些结果表明,微粒体膜双层外小叶的磷脂酰胆碱优先通过胆碱磷酸转移酶途径标记,并且该磷脂池与内小叶的磷脂池不平衡。