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Proteomic Analysis of Integral Plasma Membrane Proteins

机译:整体血浆膜蛋白的蛋白质组学分析

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Efficient methods for profiling proteins integral to the plasma membrane are highly desirable for the identification of overexpressed proteins in disease cells. Such methods will aid in both understanding basic biological processes and discovering protein targets for the design of therapeutic monoclonal antibodies. Avoiding contamination by subcellular organelles and cytosolic proteins is crucial to the successful proteomic analysis of integral plasma membrane proteins. Here we report a biotindirected affinity purification (BDAP) method for the preparation of integral plasma membrane proteins, which involves (1) biotinylation of cell surface membrane proteins in viable cells, (2) affinity enrichment using streptavidin beads, and (3) depletion of plasma membrane-associated cytosolic proteins by harsh washes with high-salt and high-pH buffers. The integral plasma membrane proteins are then extracted and subjected to SDS-PAGE separation and HPLC/MS/MS for protein identification. We used the BDAP method to prepare integral plasma membrane proteins from a human lung cancer cell line. Western blotting analysis showed that the preparation was almost completely devoid of actin, a major cytosolic protein. Nano-HPLC/MS/MS analysis of only 30 μg of protein extracted from the affinity-enriched integral plasma membrane preparation led to the identification of 898 unique proteins, of which 781 were annotated with regard to their plasma membrane localization. Among the annotated proteins, at least 526 (67.3%) were integral plasma membrane proteins. Notable among them were 62 prenylated proteins and 45 Ras family proteins. To our knowledge, this is the most comprehensive proteomic analysis of integral plasma membrane proteins in mammalian cells to date. Given the importance of integral membrane proteins for drug design, the described approach will expedite the characterization of plasma membrane subproteomes and the discovery of plasma membrane protein drug targets.
机译:对于鉴定疾病细胞中过表达的蛋白质,非常需要有效的方法来分析质膜中整合的蛋白质。此类方法将有助于理解基本的生物学过程并发现用于设计治疗性单克隆抗体的蛋白质靶标。避免被亚细胞器和胞质蛋白污染,对完整质膜蛋白的成功蛋白质组学分析至关重要。在这里我们报告生物素定向亲和纯化(BDAP)方法来制备完整的质膜蛋白,涉及(1)活细胞中细胞表面膜蛋白的生物素化,(2)使用链霉亲和素珠的亲和力富集,和(3)消耗通过用高盐和高pH缓冲液进行严格的洗涤,可以使血浆膜相关的胞质蛋白然后提取完整的质膜蛋白,并进行SDS-PAGE分离和HPLC / MS / MS进行蛋白鉴定。我们使用BDAP方法从人肺癌细胞系制备完整的质膜蛋白。蛋白质印迹分析表明,该制剂几乎完全不含肌动蛋白(一种主要的胞质蛋白)。纳米HPLC / MS / MS分析仅从富集亲和性质膜制备物中提取的30μg蛋白质即可鉴定出898种独特蛋白质,其中781种蛋白质在其质膜定位方面有注释。在带注释的蛋白质中,至少有526个(67.3%)是完整的质膜蛋白质。其中值得注意的是62种烯丙基化蛋白和45种Ras家族蛋白。据我们所知,这是迄今为止哺乳动物细胞中完整质膜蛋白最全面的蛋白质组学分析。考虑到整体膜蛋白对于药物设计的重要性,所描述的方法将加速质膜亚蛋白组的表征和质膜蛋白药物靶标的发现。

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