Philipson K D, Frank J S, Nishimoto A Y
J Biol Chem. 1983 May 10;258(9):5905-10.
We have examined the effects of phospholipase C pretreatment on Ca2+ transport in highly purified canine cardiac sarcolemmal vesicles. Na+-Ca2+ exchange, measured as Nai+-dependent Ca2+ uptake, is stimulated when 10-70% of the membrane phospholipid has been hydrolyzed. Although the phospholipase C treatment also increases sarcolemmal passive Ca2+ flux, the membrane maintains a sufficient permeability barrier for enhanced transport (via Na+-Ca2+ exchange) to be observed. These effects can be obtained with phospholipase C from either Clostridium perfringens or Bacillus cereus. We find that the phospholipase C (C. perfringens) preferentially hydrolyzes phosphatidylcholine, phosphatidylethanolamine, and sphingomyelin leaving the negatively charged phospholipids, phosphatidylserine and phosphatidylinositol, intact. This suggests that the presence of negatively charged phospholipids is sufficient to ensure Na+-Ca2+ exchange activity. Thin section electron microscopy reveals gross morphological changes in phospholipase C-treated sarcolemma. The vesicles are aggregated and diacylglycerol droplets are visible. Fusion occurs such that adjacent vesicles share a common bilayer. It is surprising that vesicles displaying severe structural damage can demonstrate enhanced transport activity.
我们研究了磷脂酶C预处理对高度纯化的犬心肌肌膜囊泡中Ca2+转运的影响。当10%-70%的膜磷脂被水解时,以依赖于细胞内钠离子的Ca2+摄取来衡量的钠钙交换会受到刺激。尽管磷脂酶C处理也会增加肌膜的被动Ca2+通量,但膜仍保持足够的渗透屏障,以便观察到增强的转运(通过钠钙交换)。来自产气荚膜梭菌或蜡样芽孢杆菌的磷脂酶C均可产生这些效应。我们发现,磷脂酶C(产气荚膜梭菌)优先水解磷脂酰胆碱、磷脂酰乙醇胺和鞘磷脂,而使带负电荷的磷脂磷脂酰丝氨酸和磷脂酰肌醇保持完整。这表明带负电荷的磷脂的存在足以确保钠钙交换活性。超薄切片电子显微镜显示磷脂酶C处理过的肌膜存在明显的形态变化。囊泡聚集,可见二酰甘油滴。发生融合,使得相邻囊泡共享一个共同的双层膜。令人惊讶的是,显示出严重结构损伤的囊泡仍能表现出增强的转运活性。