Bhakdi S, Tranum-Jensen J
Immunology. 1980 Nov;41(3):737-42.
The formation and stability of lecithin liposomes carrying re-incorporated C5b-9(m) complexes prepared through a detergent-dialysis procedure was studied. Confluent aggregates of phospholipid and protein formed at low initial lipid-protein ratios (1:1, w/w), higher lipid-protein ratios (e.g. 5:1, w/w) were required for formation of lipid vesicles with recognizable bilayer structure. The unfractionated preparations comprised a heterogeneous population of vesicles that sedimented according to their lipid-protein content to varying positions upon centrifugation in CsCl density gradients. The vesicles were stable and C5b-9(m) complexes did not detach from the membranes during centrifugation through CsCl. They also resisted elution from the bilayer by treatment with salt solutions of low or high ionic strength, or of high pH. The results indicate anchorage of C5b-9(m) in the membrane through apolar interactions, akin to that of an integral membrane protein, and are compatible with the channel concept of complement lysis.
研究了通过去污剂透析法制备的携带重新掺入的C5b-9(m)复合物的卵磷脂脂质体的形成和稳定性。在低初始脂质-蛋白质比率(1:1,w/w)下形成了磷脂和蛋白质的融合聚集体,形成具有可识别双层结构的脂质囊泡需要更高的脂质-蛋白质比率(例如5:1,w/w)。未分级的制剂包含异质的囊泡群体,它们在CsCl密度梯度中离心时根据其脂质-蛋白质含量沉降到不同位置。这些囊泡是稳定的,并且在通过CsCl离心期间C5b-9(m)复合物不会从膜上脱离。它们也能抵抗低离子强度或高离子强度的盐溶液或高pH值处理从双层中洗脱。结果表明C5b-9(m)通过非极性相互作用锚定在膜中,类似于整合膜蛋白,并且与补体溶解的通道概念一致。