Bacia Kirsten, Schwille Petra, Kurzchalia Teymuras
Department of Biophysics, Dresden University of Technology, Tatzberg 47-51, 01307 Dresden, Germany.
Proc Natl Acad Sci U S A. 2005 Mar 1;102(9):3272-7. doi: 10.1073/pnas.0408215102. Epub 2005 Feb 18.
The existence of lipid rafts in biological membranes in vivo is still debated. In contrast, the formation of domains in model systems has been well documented. In giant unilamellar vesicles (GUVs) prepared from ternary mixtures of dioleoyl-phosphatidylcholine/sphingomyelin/cholesterol, a clear separation of liquid-disordered and sphingomyelin-enriched, liquid-ordered phases could be observed. This phase separation can lead to the fission of the liquid-ordered phase from the vesicle. Here we show that in cholesterol-containing GUVs, the phase separation can involve dynamic redistribution of lipids from one phase into another as a result of a cross-linking perturbation. We found that the molecular structure of a sterol used for the preparation of GUVs determines (i) its ability to induce phase separation and (ii) the curvature (positive or negative) of the formed liquid-ordered phase. As a consequence, the latter can pinch off to the outside or inside of the vesicle. Remarkably, some mixtures of sterols induce liquid-ordered domains exhibiting both positive and negative curvature, which can lead to a new type of budding behavior in GUVs. Our findings could have implications for the role of sterols in various cell-biological processes such as budding of secretory vesicles, endocytosis, or formation of multivesicular bodies.
生物膜中脂筏在体内的存在仍存在争议。相比之下,模型系统中结构域的形成已有充分记录。在由二油酰磷脂酰胆碱/鞘磷脂/胆固醇的三元混合物制备的巨型单层囊泡(GUV)中,可以观察到液相无序和富含鞘磷脂的液相有序相的明显分离。这种相分离可导致液相有序相从囊泡中分裂出来。在此我们表明,在含胆固醇的GUV中,相分离可能涉及由于交联扰动导致脂质从一个相动态重新分布到另一个相。我们发现用于制备GUV的固醇的分子结构决定了(i)其诱导相分离的能力以及(ii)所形成的液相有序相的曲率(正或负)。因此,后者可向囊泡外部或内部收缩。值得注意的是,一些固醇混合物会诱导出同时具有正曲率和负曲率的液相有序结构域,这可能导致GUV中出现一种新型的出芽行为。我们的发现可能对固醇在各种细胞生物学过程中的作用具有启示意义,如分泌囊泡的出芽、内吞作用或多泡体的形成。