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Quantifying exosome secretion from single cells reveals a modulatory role for GPCR signaling

机译:定量单个细胞的外泌体分泌揭示了GPCR信号传导的调节作用

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摘要

Exosomes are small endosome-derived extracellular vesicles implicated in cell–cell communication and are secreted by living cells when multivesicular bodies (MVBs) fuse with the plasma membrane (PM). Current techniques to study exosome physiology are based on isolation procedures after secretion, precluding direct and dynamic insight into the mechanics of exosome biogenesis and the regulation of their release. In this study, we propose real-time visualization of MVB–PM fusion to overcome these limitations. We designed tetraspanin-based pH-sensitive optical reporters that detect MVB–PM fusion using live total internal reflection fluorescence and dynamic correlative light–electron microscopy. Quantitative analysis demonstrates that MVB–PM fusion frequency is reduced by depleting the target membrane SNAREs SNAP23 and syntaxin-4 but also can be induced in single cells by stimulation of the histamine H1 receptor (H1HR). Interestingly, activation of H1R1 in HeLa cells increases Ser110 phosphorylation of SNAP23, promoting MVB–PM fusion and the release of CD63-enriched exosomes. Using this single-cell resolution approach, we highlight the modulatory dynamics of MVB exocytosis that will help to increase our understanding of exosome physiology and identify druggable targets in exosome-associated pathologies.
机译:外泌体是小内体来源的细胞外囊泡,牵涉细胞与细胞之间的通讯,当多囊泡体(MVB)与质膜(PM)融合时,它们就会被活细胞分泌。目前研究外泌体生理的技术是基于分泌后的分离程序,排除了对外泌体生物发生机理及其释放调控的直接和动态的了解。在这项研究中,我们提出了MVB-PM融合的实时可视化技术,以克服这些限制。我们设计了基于四跨素的pH敏感的光学报告分子,使用实时全内反射荧光和动态相关光电子显微镜检测MVB-PM融合。定量分析表明,通过消耗靶膜SNARE SNAP23和Syntaxin-4可以降低MVB-PM融合频率,但也可以通过刺激组胺H1受体(H1HR)在单细胞中诱导。有趣的是,HeLa细胞中H1R1的激活增加了SNAP23的Ser110磷酸化,促进了MVB-PM融合和CD63富集的外泌体的释放。使用这种单细胞解析方法,我们强调了MVB胞吐作用的调节动力学,这将有助于增进我们对囊泡生理的理解,并确定与囊泡相关的病理学中的药物靶标。

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