Olive J, Benedetti E L, van Breugel P J, Daemen F J, Bonting S L
Biochim Biophys Acta. 1978 May 4;509(1):129-35. doi: 10.1016/0005-2736(78)90013-5.
Photoreceptor membranes derived from isolated bovine rod outer segments, are subjected to treatment with phospholipase C (Bacillus cereus). This results in varying degrees of hydrolysis of the membrane phospholipids into diglycerides and water soluble phosphate esters without loss of rhodopsin. Electron microscopic observations of thin sections and freeze-fractured preparations indicate extrusion of diglycerides from the membranes and their coalescence to lipid droplets, beginning at 20% hydrolysis of phospholipids. After 90% hydrolysis of phospholipids membranous structures are still present. The rhodopsin is located in these structures, presumably in the form of two-dimensional lateral aggregates. This explains the cross-fracturing of the membranous structures, regularly observed upon freeze-fracturing of the phospholipase-treated photoreceptor membranes.
从分离出的牛视杆细胞外段获得的光感受器膜,用磷脂酶C(蜡样芽孢杆菌)进行处理。这会导致膜磷脂不同程度地水解为甘油二酯和水溶性磷酸酯,而视紫红质不会损失。超薄切片和冷冻断裂制剂的电子显微镜观察表明,从磷脂水解20%开始,甘油二酯从膜中挤出并聚集成脂滴。磷脂水解90%后,膜结构仍然存在。视紫红质位于这些结构中,大概是以二维侧向聚集体的形式存在。这就解释了在经磷脂酶处理的光感受器膜冷冻断裂时经常观察到的膜结构交叉断裂现象。