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开发一种定量测量 EV 摄取的方法。

Development of a quantitative method to measure EV uptake.

机构信息

Departamento de Biología Molecular, Universidad Autónoma de Madrid (UAM), Madrid, Spain.

Instituto de Investigación Sanitaria La Princesa (IIS-IP), Madrid, Spain.

出版信息

Sci Rep. 2019 Jul 19;9(1):10522. doi: 10.1038/s41598-019-47023-9.

Abstract

The outstanding potential of Extracellular Vesicles (EVs) in medicine, deserves a detailed study of the molecular aspects regulating their incorporation into target cells. However, because EV size lies below the limit of resolution of optical techniques, quantification together with discrimination between EV binding to the target cell and uptake is usually not completely achieved with current techniques. Human tetraspanins CD9 and CD63 were fused to a dual EGFP-Renilla-split tag. Subcellular localization and incorporation of these fusion proteins into EVs was assessed by western-blot and fluorescence microscopy. EV binding and uptake was measured using either a classical Renilla substrate or a cytopermeable one. Incubation of target cells expressing DSP2 with EVs containing the complementary DSP1 portion could not recover fluorescence or luciferase activity. However, using EVs carrying the fully reconstituted Dual-EGFP-Renilla protein and the cytopermeable Renilla luciferase substrate, we could distinguish EV binding from uptake. We provide proof of concept of the system by analysing the effect of different chemical inhibitors, demonstrating that this method is highly sensitive and quantitative, allowing a dynamic follow-up in a high-throughput scheme to unravel the molecular mechanisms of EV uptake in different biological systems.

摘要

细胞外囊泡(EVs)在医学上具有巨大的潜力,因此值得对调节其进入靶细胞的分子机制进行详细研究。然而,由于 EV 的大小低于光学技术的分辨率极限,因此目前的技术通常无法完全实现对 EV 与靶细胞结合和内化的定量和区分。将人四跨膜蛋白 CD9 和 CD63 融合到双 EGFP-Renilla 分裂标签中。通过 Western blot 和荧光显微镜评估这些融合蛋白在 EV 中的亚细胞定位和内化。使用经典的 Renilla 底物或细胞通透性底物测量 EV 结合和内化。用含有互补 DSP1 部分的 EV 孵育表达 DSP2 的靶细胞,不能恢复荧光或荧光素酶活性。然而,使用携带完全重建的 Dual-EGFP-Renilla 蛋白和细胞通透性 Renilla 荧光素酶底物的 EV,可以区分 EV 结合和内化。我们通过分析不同化学抑制剂的效果,证明了该系统的概念验证,该方法具有高度的灵敏度和定量性,允许在高通量方案中进行动态跟踪,以揭示不同生物系统中 EV 内化的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e40/6642168/a60a40ba79dd/41598_2019_47023_Fig1_HTML.jpg

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