Nozawa Y, Fukushima H, Iida H
Biochim Biophys Acta. 1975 Oct 6;406(2):248-63. doi: 10.1016/0005-2736(75)90008-5.
Tetrahymena pyriformis WH-14 cells were grown in the medium supplemented with ergosterol (1 mg/100 ml) and the effects of replacement of tetrahymanol by ergosterol upon the lipid composition in the surface membranes (cilia and pellicles) were examined. 1. By scanning and freeze-etch electron microscopy it was suggested that exogenous ergosterol would be inserted into the lipid regions in the surface membranes. Although freeze-etched faces of filipin-treated membranes containing the native tetrahymanol showed a random distribution of 85-a protein particles, the ergosterol-replaced membranes after the same polyene treatment revealed the marked ultrastructural alterations on the fracture faces. 2. The replacement of tetrahymanol in membranes by ergosterol induced a profound alteration in the phospholipid class composition and a marked increase in phosphatidylethanolamine with a compensatory decrease in phosphatidylcholine and 2-aminoethylphosphonolipid. 3. There are significant and quantitative but not qualitative changes in the fatty acid composition of total lipids from the ergosterol-replaced membranes. There are also increases in saturated and decreases in unsaturated fatty acids. Phosphatidylethanolamine acyl chains particularly become more saturated, as compared with two other phospholipids, in ergosterol-replaced pellicles. This increase in saturation is due to an appreciable increase in C14:0, C16:0 and iso-C17:0, and a decrease in C18:1(delta9), C18:2(delta9,12) and C18:3(delta6,9,12). 4. These results suggest that profound alterations in phospholipids as well as in their fatty acyl chains are required to modify the overall membrane lipid composition for the maintenance of proper membrane fluidity. Our data would also support the thesis that polat head groups are involved in the membrane lipid organization and that sterols interact selectively with phospholipid molecules containing the appropriate fatty acyl chain composition in biological membranes.
梨形四膜虫WH - 14细胞在添加了麦角固醇(1毫克/100毫升)的培养基中培养,并研究了用麦角固醇替代四膜虫醇对表面膜(纤毛和表膜)脂质组成的影响。1. 通过扫描电子显微镜和冷冻蚀刻电子显微镜观察表明,外源性麦角固醇会插入到表面膜的脂质区域。虽然含有天然四膜虫醇的制霉菌素处理膜的冷冻蚀刻面显示85 - a蛋白颗粒呈随机分布,但相同多烯处理后的麦角固醇替代膜在断裂面上显示出明显的超微结构改变。2. 用麦角固醇替代膜中的四膜虫醇会导致磷脂类组成发生深刻变化,磷脂酰乙醇胺显著增加,同时磷脂酰胆碱和2 - 氨基乙基磷脂酸有补偿性减少。3. 麦角固醇替代膜的总脂质脂肪酸组成有显著的定量变化但无定性变化。饱和脂肪酸增加,不饱和脂肪酸减少。与其他两种磷脂相比,在麦角固醇替代的表膜中,磷脂酰乙醇胺的酰基链尤其变得更加饱和。这种饱和度的增加是由于C14:0、C16:0和异C17:0明显增加,以及C18:1(Δ9)、C18:2(Δ9,12)和C18:3(Δ6,9,12)减少。4. 这些结果表明,为维持适当的膜流动性,磷脂及其脂肪酰链的深刻变化对于改变整体膜脂质组成是必要的。我们的数据也支持这样的论点,即极性头部基团参与膜脂质组织,并且在生物膜中固醇与含有适当脂肪酰链组成的磷脂分子选择性相互作用。