首页> 外文OA文献 >Surface charge markedly attenuates the nonlamellar phase-forming propensities of lipid bilayer membranes: calorimetric and (31)P-nuclear magnetic resonance studies of mixtures of cationic, anionic, and zwitterionic lipids.
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Surface charge markedly attenuates the nonlamellar phase-forming propensities of lipid bilayer membranes: calorimetric and (31)P-nuclear magnetic resonance studies of mixtures of cationic, anionic, and zwitterionic lipids.

机译:表面电荷显着减弱了脂质双层膜的非层状相形成倾向:阳离子,阴离子和两性离子脂质混合物的量热和(31)P-核磁共振研究。

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摘要

The lamellar/nonlamellar phase preferences of lipid model membranes composed of mixtures of several cationic lipids with various zwitterionic and anionic phospholipids were examined by a combination of differential scanning calorimetry and (31)P NMR spectroscopy. All of the cationic lipids utilized in this study form only lamellar phases in isolation. Mixtures of these cationic lipids with zwitterionic strongly lamellar phase-preferring lipids such as phosphatidylcholine form only the lamellar liquid-crystalline phase even at high temperatures, as expected. Moreover, mixtures of these cationic lipids with strongly nonlamellar phase-preferring zwitterionic lipids such as phosphatidylethanolamine exhibit a markedly reduced propensity to form inverted nonlamellar phases, again as expected. However, when mixed with anionic lipids such as phosphatidylserine, phosphatidylglycerol, cardiolipin, or phosphatidic acid, a marked enhancement of nonlamellar phase-forming propensity occurs, despite the fact both components of the mixture are nominally lamellar phase-preferring. An examination of the lamellar/nonlamellar phase transition temperatures and the nature of the nonlamellar phases formed, as a function of temperature and of the composition of the mixture, indicates that the propensity to form inverted nonlamellar phases is maximal in mixtures where the mean surface charge of the membrane surface approaches neutrality and decreases markedly with increases in the density of positive or negative charge at the membrane surface. Moreover, the onset temperatures of the reversed hexagonal phase rise more steeply than do those of the inverted cubic phase as the ratio of cationic and anionic lipids is varied, suggesting that the formation of inverted hexagonal phases is more sensitive to this surface charge effect. These results indicate that surface charge per se is a significant and effective modulator of the lamellar/nonlamellar phase preferences of membrane lipids and that charged group interactions at membrane surfaces may have a major role in regulating this particular membrane property.
机译:通过差示扫描量热法和(31)P NMR光谱法检查了由几种阳离子脂质与各种两性离子和阴离子磷脂的混合物组成的脂质模型膜的层状/非层状相偏好。本研究中使用的所有阳离子脂质仅能单独形成层状相。如预期的那样,这些阳离子脂质与两性离子强烈优选层状相的脂质如磷脂酰胆碱的混合物即使在高温下也仅形成层状液晶相。而且,这些阳离子脂质与强烈偏于非层状相的两性离子脂质如磷脂酰乙醇胺的混合物表现出明显降低的形成反相非层状相的倾向,这也是预期的。但是,当与阴离子脂质(如磷脂酰丝氨酸,磷脂酰甘油,心磷脂或磷脂酸)混合时,尽管该混合物的两种成分名义上都是片层相优先的,但非片层相的形成倾向仍显着增强。对层状/非层状相变温度和所形成的非层状相的性质(随温度和混合物组成的函数)的研究表明,在平均表面电荷为均值的混合物中,形成反相非层状相的可能性最大。膜表面的电导率接近中性,并随着膜表面正或负电荷密度的增加而显着降低。此外,随着阳离子和阴离子脂质比例的变化,反相六角相的起始温度比反相立方相的起始温度上升得更陡,这表明反相六角相的形成对这种表面电荷效应更为敏感。这些结果表明表面电荷本身是膜脂质的层状/非层状相偏好的重要且有效的调节剂,并且膜表面上的带电基团相互作用可能在调节这种特定的膜性质中起主要作用。

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  • 作者

    Lewis, R N; McElhaney, R N;

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  • 年度 2000
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  • 正文语种 en
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