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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Docosahexaenoic acid promotes micron scale liquid-ordered domains. A comparison study of docosahexaenoic versus oleic acid containing phosphatidylcholine in raft-like mixtures
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Docosahexaenoic acid promotes micron scale liquid-ordered domains. A comparison study of docosahexaenoic versus oleic acid containing phosphatidylcholine in raft-like mixtures

机译:二十二碳六烯酸促进微米级的液体有序域。筏状混合物中二十二碳六烯酸与油酸含磷脂酰胆碱的比较研究

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摘要

The understanding of the functional role of the lipid diversity in biological membranes is a major challenge. Lipid models have been developed to address this issue by using lipid mixtures generating liquid-ordered (L-o)/liquid-disordered (L-d) immiscibility. The present study examined mixtures comprising Egg sphingomyelin (SM), cholesterol (chol) and phosphatidylcholine (PC) either containing docosahexaenoic (PDPC) or oleic acid (POPC). The mixtures were examined in terms of their capability to induce phase separation at the micron- and nano-scales. Fluorescence microscopy, electron spin resonance (ESR), X-ray diffraction (XRD) and calorimetty methods were used to analyze the lateral organization of the mixtures. Fluorescence microscopy of giant vesicles could show that the temperature of the micron-scale L-o/L-d miscibility is higher for PDPC than for POPC ternary mixtures. At 37 degrees C, no micron-scale L-o/L-d phase separation could be identified in the POPC containing mixtures while it was evident for PDPC. In contrast, a phase separation was distinguished for both PC mixtures by ESR and XRD, indicative that PDPC and POPC mixtures differed in micron vs nano domain organization. Compared to POPC, the higher line tension of the L-o domains observed in PDPC mixtures is assumed to result from the higher difference in L-o/L-d order parameter rather than hydrophobic mismatch. (C) 2015 Elsevier B.V. All rights reserved.
机译:对脂质多样性在生物膜中的功能作用的理解是一个重大挑战。已经开发出脂质模型来解决此问题,方法是使用脂质混合物产生液体有序(L-o)/液体无序(L-d)不混溶。本研究检查了含有二十二碳六烯酸(PDPC)或油酸(POPC)的卵鞘磷脂(SM),胆固醇(chol)和磷脂酰胆碱(PC)的混合物。检查了混合物在微米和纳米尺度上引起相分离的能力。荧光显微镜,电子自旋共振(ESR),X射线衍射(XRD)和量热法被用来分析混合物的横向组织。巨大囊泡的荧光显微镜检查可能表明,PDPC的微米级L-o / L-d混溶性温度高于POPC三元混合物。在37摄氏度下,在含有POPC的混合物中,没有发现微米级的L-o / L-d相分离,而PDPC明显。相反,两种PC混合物的相分离通过ESR和XRD进行了区分,表明PDPC和POPC混合物在微米与纳米域组织方面有所不同。与POPC相比,在PDPC混合物中观察到的L-o结构域的较高线张力被认为是由于L-o / L-d顺序参数的较高差异而不是疏水失配引起的。 (C)2015 Elsevier B.V.保留所有权利。

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