Womersley C, Uster P S, Rudolph A S, Crowe J H
Cryobiology. 1986 Jun;23(3):245-55. doi: 10.1016/0011-2240(86)90050-7.
The relative abilities of a number of naturally occurring carbohydrates to inhibit dehydration-induced fusion between palmitoyloleoylphosphatidylcholine:phosphatidylserine (85:15) large unilamellar vesicles have been studied. Fusion events were quantified using a fluorescence resonance energy transfer technique. Trehalose was most effective at inhibiting fusion (0.4 g/trehalose/g lipid showed 30% probe intermixing), followed by maltose (60% intermixing), fructose (60%), sucrose (70%), glucose (80%), cellobiose, glycerol, raffinose, and myo-inositol (90%). The relative abilities of these carbohydrates to inhibit fusion correlate directly with their abilities to interact with phospholipids, maintain bilayer fluidity, and preserve biological membranes. The results are discussed in relation to the crystalline structure of the carbohydrates and their possible influence on level of interaction with phosphate head groups.
磷脂酰丝氨酸(85:15)大单层囊泡之间融合的相对能力。使用荧光共振能量转移技术对融合事件进行定量。海藻糖在抑制融合方面最有效(0.4 g海藻糖/g脂质时显示30%的探针混合),其次是麦芽糖(60%混合)、果糖(60%)、蔗糖(70%)、葡萄糖(80%)、纤维二糖、甘油、棉子糖和肌醇(90%)。这些碳水化合物抑制融合的相对能力与其与磷脂相互作用、维持双层流动性和保护生物膜的能力直接相关。结合碳水化合物的晶体结构及其对与磷酸头部基团相互作用水平的可能影响对结果进行了讨论。