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膜结合分子交换动力学的光学研究。

An optical study of the exchange kinetics of membrane bound molecules.

作者信息

Sengupta P, Sackmann E, Kühnle W, Scholz H P

出版信息

Biochim Biophys Acta. 1976 Jul 15;436(4):869-78. doi: 10.1016/0005-2736(76)90414-4.

Abstract

The kinetics of molecular exchange between lipid bilayers are studied using a special fluorescence technique. Pyrene and pyrene decanoic acid are chosen as typical examples of an apolar and amphiphilic molecule. Their property of forming dimers in the excited state (excimer) is exploited. The time dependencies of monomer and excimer intensities after rapid mixing of vesicles doped with fluorescent probe with undoped ones are studied by stopped-flow technique. The transient curves reveal the information on the exchange kinetics. A theoretical analysis shows that the molecular exchange follows a first order kinetics. Surprisingly short half life-times tex for this exchange process are obtained (for dipalmitoyl phosphatidylcholine tex=3.3 s for T=23 degrees C, tex=0.5 s for T=68 degrees C). Multilamellar systems (onion like structure) show much slower exchange rates. The exchange rates are nearly equal for polar and unpolar molecules. Addition of cholesterol has a strong reducing effect on this rate. Charging of dipalmitoyl phosphatidylcholine vesicle surfaces by the addition of (a) EuCl3 to the aqueous phase and (b) dipalmitoyl phosphatidic acid to the lipid phase reduces the exchange rate by about an order of magnitude above the phase transition. In a separate experiment it is shown that the lipid exchange or fusion for two different lipids is a much slower process compared to the label exchange. In fact vesicles kept below the phase transition temperature Ttr for both lipids, do not fuse even after 70 h. Noticeable fusion occurs after 10 h when the mixture stays above Ttr. Experiment shows that the fusion of pure lipid vesicles is not very much affected by the presence of a charged lipid. Change in concentration of the monovalent ions in the aqueous solution by two orders of magnitude does not have an appreciable effect on the exchange rate of phospholipids.

摘要

利用一种特殊的荧光技术研究了脂质双层之间分子交换的动力学。芘和芘癸酸被选为非极性分子和两亲性分子的典型例子。利用了它们在激发态形成二聚体(准分子)的特性。通过停流技术研究了掺杂荧光探针的囊泡与未掺杂囊泡快速混合后单体和准分子强度随时间的变化。瞬态曲线揭示了交换动力学的信息。理论分析表明分子交换遵循一级动力学。令人惊讶的是,获得了该交换过程极短的半衰期tex(对于二棕榈酰磷脂酰胆碱,在T = 23℃时tex = 3.3秒,在T = 68℃时tex = 0.5秒)。多层体系(洋葱状结构)显示出慢得多的交换速率。极性和非极性分子的交换速率几乎相等。添加胆固醇对该速率有很强的降低作用。通过向水相中添加(a)EuCl3和向脂质相中添加(b)二棕榈酰磷脂酸使二棕榈酰磷脂酰胆碱囊泡表面带电,在相变温度以上使交换速率降低约一个数量级。在另一个实验中表明,与标记物交换相比,两种不同脂质的脂质交换或融合是一个慢得多的过程。实际上,两种脂质都保持在相变温度Ttr以下的囊泡,即使在70小时后也不会融合。当混合物保持在Ttr以上时,10小时后会发生明显的融合。实验表明,纯脂质囊泡的融合受带电脂质存在的影响不大。水溶液中单价离子浓度变化两个数量级对磷脂的交换速率没有明显影响。

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