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磷脂酰胆碱 - 脂肪酸膜。I. 质子化、盐浓度、温度和链长对混合囊泡、双层膜和非层状结构的胶体和相性质的影响。

Phosphatidylcholine-fatty acid membranes. I. Effects of protonation, salt concentration, temperature and chain-length on the colloidal and phase properties of mixed vesicles, bilayers and nonlamellar structures.

作者信息

Cevc G, Seddon J M, Hartung R, Eggert W

机构信息

Laboratorium für exp. Urologie, Universitätsklinikum Essen, F.R.G.

出版信息

Biochim Biophys Acta. 1988 May 24;940(2):219-40. doi: 10.1016/0005-2736(88)90197-6.

Abstract

The phase and colloidal properties of phosphatidylcholine/fatty acid (PC/FA) mixed vesicles have been investigated by optical methods, acid-base titration, and theoretically as a function of temperature (5-80 degrees C), molar lipid ratio (0-1), lipid chain length (C14-C18), headgroup ionization (1.5 less than or equal to pH less than or equal to 10), vesicle concentration (0.05-32 mumol vesicle.dm-3, and ionic strength (0.005 less than or equal to J less than or equal to 0.25). Increasing the fatty acid concentration in PC bilayers causes the phase transition temperatures (at 4 less than or equal to pH less than or equal to 5) to rise until, for more than 2 FA molecules per PC molecule, the sample turbidity exhibits only two transitions corresponding to the chain-melting of the 1:2 stoichiometric complexes of PC/FA, and pure fatty acid. The former transition is into a nonlamellar phase and is accompanied by extremely rapid vesicle aggregation (with association rates on the order of Ca approximately 10(7) dm3.mol-1.s-1) and massive lipid precipitation. Fluid-phase vesicles with less than 2 FA per PC associate much more slowly (Ca approximately 10(3) dm3.mol-1.s-1), their aggregation being comparable to that of the ordered-phase liposomes. Under no conditions was the relation between the fatty acid concentration and the vesicle association rate for the fluid-phase vesicles linear. In contrast to the X-ray diffraction data, optical measurements reveal a 'pretransitional region' between the chain-melting temperature of the PC component and the temperature at which the gross transformation into a nonlamellar phase sets in. This is seen for all lipid mixtures investigated. On the relative temperature scale, lipids with different chain lengths behave qualitatively similarly; however, the effective association constants determined for samples of constant lipid concentration seem to decrease somewhat with the number of CH2 groups per chain. Fatty acid protonation, which yields electrically neutral bilayers, invariably increases the rate of vesicle association; we have measured, for example, Ca approximately 10(2) at pH approximately 7 and Ca approximately 10(7) dm3.mol-1.s-1 at pH approximately 4). Protonation of the phosphatidylcholine phosphate groups, which causes a net positive charge to accumulate on the lipid vesicles, initially increases (Ca approximately 10(8) dm3.mol-1.s-1) but ultimately decreases (Ca approximately 10(7) dm3.mol-1.s-1) the rate of association between PC/FA (1:2) mixed vesicles.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过光学方法、酸碱滴定并从理论上研究了磷脂酰胆碱/脂肪酸(PC/FA)混合囊泡的相和胶体性质,这些性质是温度(5 - 80摄氏度)、摩尔脂质比(0 - 1)、脂质链长度(C14 - C18)、头基电离(1.5≤pH≤10)、囊泡浓度(0.05 - 32μmol囊泡·dm⁻³)以及离子强度(0.005≤J≤0.25)的函数。增加PC双层中脂肪酸的浓度会使相变温度(在4≤pH≤5时)升高,直到每个PC分子有超过2个FA分子时,样品浊度仅呈现两个转变,分别对应PC/FA 1:2化学计量复合物和纯脂肪酸的链熔化。前一个转变进入非层状相,并伴随着极其快速的囊泡聚集(缔合速率约为Ca≈10⁷ dm³·mol⁻¹·s⁻¹)和大量脂质沉淀。每个PC含有少于2个FA的液相囊泡缔合要慢得多(Ca≈10³ dm³·mol⁻¹·s⁻¹),它们的聚集与有序相脂质体的聚集相当。在任何条件下,液相囊泡的脂肪酸浓度与囊泡缔合速率之间的关系都不是线性的。与X射线衍射数据相反,光学测量揭示了PC组分的链熔化温度与向非层状相的总体转变开始温度之间的“预转变区域”。在所研究的所有脂质混合物中都观察到了这一点。在相对温度尺度上,不同链长度的脂质在定性上表现相似;然而,对于恒定脂质浓度的样品测定的有效缔合常数似乎随着每条链中CH₂基团的数量略有降低。脂肪酸质子化产生电中性双层,总是会增加囊泡缔合速率;例如,我们测量到在pH约为7时Ca≈10²,在pH约为4时Ca≈10⁷ dm³·mol⁻¹·s⁻¹。磷脂酰胆碱磷酸基团的质子化会使脂质囊泡上积累净正电荷,最初会增加(Ca≈10⁸ dm³·mol⁻¹·s⁻¹)但最终会降低(Ca≈10⁷ dm³·mol⁻¹·s⁻¹)PC/FA(1:2)混合囊泡之间的缔合速率。(摘要截断于400字)

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