Christiansson A, Kuypers F A, Roelofsen B, Op den Kamp J A, van Deenen L L
J Cell Biol. 1985 Oct;101(4):1455-62. doi: 10.1083/jcb.101.4.1455.
In a previous report it was shown that the replacement of native erythrocyte phosphatidylcholine (PC) with different PC species which have defined acyl chain compositions can lead to morphological changes (Kuypers, F.A., W. Berendsen, B. Roelofsen, J. A. F. Op den Kamp, and L.L.M. van Deenen, 1984, J. Cell Biol., 99:2260-2267). It was proposed that differences in molecular shape between the introduced PC species and normal erythrocyte PC caused the membrane to bend outwards or inwards, depending on the shape of the PC exchanged. To support this proposal, two requirements would have to be fulfilled: the exchange reaction would take place only with the outer lipid monolayer of the erythrocyte, and the extent of lipid transbilayer movement would be restricted. If this theory is correct, any treatment causing unilateral changes in lipid molecular shape should lead to predictable morphological changes. Since this hypothesis is a refinement of the coupled bilayer hypothesis, but so far lacks experimental support, we have sought other means to change lipid molecular shape unilaterally. Shape changes of human erythrocytes were induced by the replacement of native PC by various PC species using a phosphatidylcholine-specific transfer protein: by hydrolysis of phospholipids in intact cells using sphingomyelinase C or phospholipase A2, and by the combination of both procedures. The morphological changes were predictable; additive when both treatments were applied, and explicable on the basis of the geometry of the lipid molecules involved. The results strongly support the notion that lipid molecular shape affects erythrocyte morphology.
在之前的一份报告中表明,用具有特定酰基链组成的不同磷脂酰胆碱(PC)物种替代天然红细胞磷脂酰胆碱(PC)会导致形态变化(Kuypers, F.A., W. Berendsen, B. Roelofsen, J. A. F. Op den Kamp, and L.L.M. van Deenen, 1984, J. Cell Biol., 99:2260 - 2267)。有人提出,引入的PC物种与正常红细胞PC之间分子形状的差异会导致膜向外或向内弯曲,这取决于所交换PC的形状。为了支持这一观点,必须满足两个要求:交换反应仅发生在红细胞的外脂质单层,并且脂质跨双层运动的程度会受到限制。如果这个理论是正确的,任何导致脂质分子形状单侧变化的处理都应该导致可预测的形态变化。由于这个假设是对耦合双层假设的改进,但目前缺乏实验支持,我们寻求了其他方法来单侧改变脂质分子形状。通过使用磷脂酰胆碱特异性转移蛋白,用各种PC物种替代天然PC;通过使用鞘磷脂酶C或磷脂酶A2在完整细胞中水解磷脂,以及通过这两种方法的组合,诱导人红细胞的形状变化。形态变化是可预测的;当两种处理都应用时是相加的,并且可以根据所涉及脂质分子的几何形状来解释。结果有力地支持了脂质分子形状影响红细胞形态这一观点。