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Comparison of Three Ternary Lipid Bilayer Mixtures: FRET and ESR Reveal Nanodomains

机译:三种三元脂质双层混合物的比较:FRET和ESR揭示纳米域

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摘要

Phase diagrams of ternary lipid mixtures containing cholesterol have provided valuable insight into cell membrane behaviors, especially by describing regions of coexisting liquid-disordered (Ld) and liquid-ordered (Lo) phases. Fluorescence microscopy imaging of giant unilamellar vesicles has greatly assisted the determination of phase behavior in these systems. However, the requirement for optically resolved Ld + Lo domains can lead to the incorrect inference that in lipid-only mixtures, Ld + Lo domain coexistence generally shows macroscopic domains. Here we show this inference is incorrect for the low melting temperature phosphatidylcholines abundant in mammalian plasma membranes. By use of high compositional resolution Förster resonance energy transfer measurements, together with electron spin resonance data and spectral simulation, we find that ternary mixtures of DSPC and cholesterol together with either POPC or SOPC, do indeed have regions of Ld + Lo coexistence. However, phase domains are much smaller than the optical resolution limit, likely on the order of the Förster distance for energy transfer (R0, ∼2–8 nm).
机译:含有胆固醇的三元脂质混合物的相图,特别是通过描述液体无序(Ld)和液体有序(Lo)相共存的区域,提供了对细胞膜行为的宝贵见解。巨大的单层囊泡的荧光显微镜成像极大地帮助了这些系统中相行为的确定。但是,对光学拆分的Ld + Lo域的要求可能导致错误的推断,即仅脂质混合物中Ld + Lo域共存通常显示宏观域。在这里,我们表明对于哺乳动物血浆膜中丰富的低熔点磷脂酰胆碱这一推论是不正确的。通过使用高组成分辨率的Förster共振能量转移测量,电子自旋共振数据和光谱模拟,我们发现DSPC和胆固醇的三元混合物以及POPC或SOPC确实具有Ld + Lo共存的区域。但是,相域远小于光学分辨率极限,可能约为能量转移的Förster距离(R0,〜2–8 nm)。

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