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A live cell reporter of exosome secretion and uptake reveals pathfinding behavior of migrating cells.


ABSTRACT: Small extracellular vesicles called exosomes affect multiple autocrine and paracrine cellular phenotypes. Understanding the function of exosomes requires a variety of tools, including live imaging. Our previous live-cell reporter, pHluorin-CD63, allows dynamic subcellular monitoring of exosome secretion in migrating and spreading cells. However, dim fluorescence and the inability to make stably-expressing cell lines limit its use. We incorporated a stabilizing mutation in the pHluorin moiety, M153R, which now exhibits higher, stable expression in cells and superior monitoring of exosome secretion. Using this improved construct, we visualize secreted exosomes in 3D culture and in vivo and identify a role for exosomes in promoting leader-follower behavior in 2D and 3D migration. Incorporating an additional non-pH-sensitive red fluorescent tag allows visualization of the exosome lifecycle, including multivesicular body (MVB) trafficking, MVB fusion, exosome uptake and endosome acidification. This reporter will be a useful tool for understanding both autocrine and paracrine roles of exosomes.

SUBMITTER: Sung BH 

PROVIDER: S-EPMC7190671 | biostudies-literature | 2020 Apr

REPOSITORIES: biostudies-literature

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A live cell reporter of exosome secretion and uptake reveals pathfinding behavior of migrating cells.

Sung Bong Hwan BH   von Lersner Ariana A   Guerrero Jorge J   Krystofiak Evan S ES   Inman David D   Pelletier Roxanne R   Zijlstra Andries A   Ponik Suzanne M SM   Weaver Alissa M AM  

Nature communications 20200429 1


Small extracellular vesicles called exosomes affect multiple autocrine and paracrine cellular phenotypes. Understanding the function of exosomes requires a variety of tools, including live imaging. Our previous live-cell reporter, pHluorin-CD63, allows dynamic subcellular monitoring of exosome secretion in migrating and spreading cells. However, dim fluorescence and the inability to make stably-expressing cell lines limit its use. We incorporated a stabilizing mutation in the pHluorin moiety, M1  ...[more]

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