Lee Song-Yi, Seo Jeong Kon, Rhee Hyun-Woo
Department of Chemistry, Seoul National University, Seoul, Republic of Korea.
Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan, Republic of Korea.
Methods Mol Biol. 2019;2008:97-105. doi: 10.1007/978-1-4939-9537-0_8.
Recently, proximity labeling has been developed to map spatially localized proteomes in live cells. Usually, these methods employ enzymatic biotinylation of the proximal proteins with reactive biotin species. The labeled proteins may contain biotinylated modifications, which can be enriched by streptavidin beads through affinity purification. However, during the bead enrichment process, unlabeled proteins can be enriched to have specific binding affinity toward the biotinylated proteins or high binding affinity to the bead surface. If the unlabeled proteins remain attached to the beads after washing and are analyzed by mass spectrometry (MS) using the conventional workflow for the unlabeled peptidome, they would appear as proximal proteins in the targeted space. However, the unlabeled proteins, including the specific interaction partners of the biotinylated proteins, are false positives for proximity labeling. Including the unlabeled proteome in the identification list for proximity labeling does not provide a clear picture of the local proteome in the targeted space. This chapter is a detailed protocol of the first direct identification method (Spot-BioID) for identifying biotin-labeled proteomes of promiscuous biotin ligase (pBirA) labeling.
最近,邻近标记技术已被开发用于绘制活细胞中空间定位的蛋白质组图谱。通常,这些方法利用具有反应性生物素的酶对近端蛋白质进行生物素化。标记的蛋白质可能含有生物素化修饰,可通过链霉亲和素磁珠进行亲和纯化富集。然而,在磁珠富集过程中,未标记的蛋白质可能因对生物素化蛋白质具有特异性结合亲和力或对磁珠表面具有高结合亲和力而被富集。如果未标记的蛋白质在洗涤后仍附着在磁珠上,并使用针对未标记肽组的传统工作流程通过质谱(MS)进行分析,它们将在目标空间中表现为近端蛋白质。然而,这些未标记的蛋白质,包括生物素化蛋白质的特异性相互作用伙伴,对于邻近标记来说都是假阳性。将未标记的蛋白质组纳入邻近标记的鉴定列表中,并不能清晰呈现目标空间中的局部蛋白质组情况。本章详细介绍了用于鉴定泛素连接酶(pBirA)标记的生物素标记蛋白质组的第一种直接鉴定方法(Spot-BioID)的实验方案。