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Effect of temperature on the formation of liquid phase-separating giant unilamellar vesicles (GUV)

机译:温度对液相分离大单层囊泡(GUV)形成的影响

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Giant unilamellar vesicles (GUVs) are widely used as model systems to study both, lipid and membrane protein behavior. During their preparation by the commonly applied electroformation method, a number of issues must be considered to avoid the production of artifacts due to a poor lipid hydration and protein degradation. Here we focus on the effect of preparation temperature on GUVs composed of the most commonly used domain-forming mixture dioleoylelphospatidylcholine/shingomyelin/cholesterol (DOPC/SM/chol) (2/2/1). Lower production temperatures are generally preferable when aiming at a functional reconstitution of proteins into the membrane. On the other hand, lower growth temperature is suspected to alter the lipid composition and the yield of phase-separating vesicles. By confocal imaging, we find that vesicles prepared significantly above and below the melting temperature T _m have the same overall morphology, similar size distributions of vesicles and a similar area coverage by liquid-ordered (L _o) domains. However, a large population analysis indeed reveals a different overall yield of phase-separating vesicles. Two-focus scanning fluorescence correlation spectroscopy measurements did not show any divergence of lipid analog mobility in (L _o) and (L _d) phases in vesicles prepared at different temperatures, indicating that the lowered growth temperature did not influence the lipid organization within the two phases. Moreover, the expected advantages of lower preparation temperature for proteo-GUVs could be exemplified by the reconstitution of voltage dependent anion channel (VDAC) into DOPC/SM/chol GUVs, which aggregates at high, but not at low preparation temperatures.
机译:巨型单层囊泡(GUV)被广泛用作研究脂质和膜蛋白行为的模型系统。在通过常用的电铸方法制备它们的过程中,必须考虑许多问题,以避免由于脂质水合不良和蛋白质降解而产生假象。在这里,我们关注制备温度对GUV的影响,该GUV由最常用的形成域的混合物二醇油酰磷脂酰胆碱/鞘磷脂/胆固醇(DOPC / SM / chol)(2/2/1)组成。当目的在于蛋白质向膜的功能重构时,通常优选较低的生产温度。另一方面,怀疑较低的生长温度会改变脂质组成和相分离囊泡的产量。通过共聚焦成像,我们发现明显高于和低于熔化温度T_m制备的囊泡具有相同的整体形态,相似的囊泡大小分布以及相似的液体有序(L_o)域覆盖面积。然而,大量的人口分析确实揭示了相分离囊泡的总产量不同。两焦点扫描荧光相关光谱法测量未显示在不同温度下制备的囊泡中(L _o)和(L _d)相中脂质类似物迁移率有任何差异,表明降低的生长温度不会影响二者中的脂质组织阶段。此外,蛋白-GUV的较低制备温度的预期优势可以通过将电压依赖性阴离子通道(VDAC)重构为DOPC / SM / chol GUV来例证,DOPC / SM / chol GUV在高制备温度下聚集,而在低制备温度下不聚集。

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