生物素化
细胞质
细胞生物学
细胞内
细胞外
融合蛋白
链霉亲和素
核糖核酸
小泡
转运蛋白
胞外囊泡
化学
生物素
生物
生物物理学
生物化学
膜
微泡
小RNA
基因
重组DNA
作者
Lu Song,Jun Chen,Angela Sun,Randy Schekman
出处
期刊:Bio-protocol
[Bio-Protocol]
日期:2021-01-01
卷期号:11 (21)
被引量:1
标识
DOI:10.21769/bioprotoc.4213
摘要
Extracellular vesicles (EVs) are thought to mediate intercellular communication through the delivery of cargo proteins and RNA to target cells. The uptake of EVs is often followed visually using lipophilic-dyes or fluorescently-tagged proteins to label membrane constituents that are then internalized into recipient cells ( Christianson et al., 2013 ; De Jong et al., 2019 ). However, these methods do not probe the exposure of EV cargo to intracellular compartments, such as the cytoplasm and nucleus, where protein or RNA molecules could elicit functional changes in recipient cells. In this protocol, we employ an EV cargo protein-APEX fusion to detect proximity interactions with recipient cell cytoplasmic/nuclear targets. This approach results in the biotinylation of proteins in close contact with the reporter fusion and thus permits profiling of biotinylated proteins affinity purified on immobilized streptavidin beads. Graphic abstract: Schematic showing three steps of APEX-mediated proximity labeling of proteins in cells targeted by EVs.
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