首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Lipid Vesicle-mediated Affinity Chromatography using Magnetic Activated Cell Sorting (LIMACS): a Novel Method to Analyze Protein-lipid Interaction
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Lipid Vesicle-mediated Affinity Chromatography using Magnetic Activated Cell Sorting (LIMACS): a Novel Method to Analyze Protein-lipid Interaction

机译:脂质囊泡介导的亲和层析使用磁激活细胞分选(LIMACS):一种分析蛋白质-脂质相互作用的新方法

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摘要

The analysis of lipid protein interaction is difficult because lipids are embedded in cell membranes and therefore, inaccessible to most purification procedures. As an alternative, lipids can be coated on flat surfaces as used for lipid ELISA and Plasmon resonance spectroscopy. However, surface coating lipids do not form microdomain structures, which may be important for the lipid binding properties. Further, these methods do not allow for the purification of larger amounts of proteins binding to their target lipids. To overcome these limitations of testing lipid protein interaction and to purify lipid binding proteins we developed a novel method termed lipid vesicle-mediated affinity chromatography using magnetic-activated cell sorting (LIMACS). In this method, lipid vesicles are prepared with the target lipid and phosphatidylserine as the anchor lipid for Annexin V MACS. Phosphatidylserine is a ubiquitous cell membrane phospholipid that shows high affinity to the protein Annexin V. Using magnetic beads conjugated to Annexin V the phosphatidylserine-containing lipid vesicles will bind to the magnetic beads. When the lipid vesicles are incubated with a cell lysate the protein binding to the target lipid will also be bound to the beads and can be co-purified using MACS. This method can also be used to test if recombinant proteins reconstitute a protein complex binding to the target lipid. We have used this method to show the interaction of atypical PKC (aPKC) with the sphingolipid ceramide and to co-purify prostate apoptosis response 4 (PAR-4), a protein binding to ceramide-associated aPKC. We have also used this method for the reconstitution of a ceramide-associated complex of recombinant aPKC with the cell polarity-related proteins Par6 and Cdc42. Since lipid vesicles can be prepared with a variety of sphingo- or phospholipids, LIMACS offers a versatile test for lipid-protein interaction in a lipid environment that resembles closely that of the cell membrane. Additional lipid protein complexes can be identified using proteomics analysis of lipid binding protein co-purified with the lipid vesicles.
机译:脂质蛋白相互作用的分析很困难,因为脂质被嵌入细胞膜中,因此大多数纯化程序无法获得。或者,可以将脂质包被在平坦的表面上,如脂质ELISA和等离子共振光谱法所用。但是,表面涂层脂质不会形成微区结构,这对于脂质结合特性可能很重要。此外,这些方法不允许纯化与其目标脂质结合的大量蛋白质。为了克服测试脂蛋白相互作用的这些限制并纯化脂结合蛋白,我们开发了一种使用磁激活细胞分选(LIMACS)的称为脂囊介导的亲和色谱的新方法。在这种方法中,用目标脂质和磷脂酰丝氨酸作为膜联蛋白V MACS的锚定脂质制备脂质囊泡。磷脂酰丝氨酸是一种普遍存在的细胞膜磷脂,对蛋白质Annexin V具有高亲和力。使用与Annexin V缀合的磁珠,含磷脂酰丝氨酸的脂质囊泡将与磁珠结合。当脂质囊泡与细胞裂解液一起孵育时,与目标脂质结合的蛋白质也将与珠子结合,并可以使用MACS共同纯化。该方法也可用于测试重组蛋白是否重构了与靶脂质结合的蛋白复合物。我们已经使用这种方法来显示非典型PKC(aPKC)与鞘脂神经酰胺的相互作用,并共纯化前列腺细胞凋亡反应4(PAR-4),一种与神经酰胺相关的aPKC结合的蛋白质。我们还使用这种方法与细胞极性相关蛋白Par6和Cdc42重组了重组aPKC的神经酰胺相关复合物。由于可以用多种鞘脂或磷脂来制备脂质囊泡,因此LIMACS为脂质环境中与细胞膜极为相似的脂质-蛋白质相互作用提供了多功能的测试方法。可以使用与脂质囊泡共纯化的脂质结合蛋白的蛋白质组学分析来鉴定其他脂质蛋白复合物。

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